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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes

As of 14 August 2026, this Paper Citation Record lists 89 of 89 outbound references and 0 inbound Pith citation observations for arXiv:2607.17488.

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2607.17488 v1

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89 of 89 outbound references displayed

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Outbound references

Observation 76a6304c-75d6-43ee-ac32-d90f2be80a22 · outbound

This paper cites cm” (central mixing) denotes no 56Ni mixing into the hydrogen-rich envelope; “fm.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes cm” (central mixing) denotes no 56Ni mixing into the hydrogen-rich envelope; “fm

Reference 1

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Observation db735b32-438d-4e9b-8d42-712bbe994197 · outbound

This paper cites latent mixup consistency.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes latent mixup consistency

Reference 2

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Observation 787ed8ae-8619-4c72-a963-191d863fc693 · outbound

This paper cites For this purpose, we construct an emulator network consisting of 12 ResNet blocks with SiLU activations between layers.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes For this purpose, we construct an emulator network consisting of 12 ResNet blocks with SiLU activations between layers

Reference 3

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Observation 8d8b6c9b-6470-4609-9f82-2d5cff1be219 · outbound

This paper cites twin” to SN 2005cs. Unlike the ambiguous early spectra of SN 2005cs—where the origin of similar features remained debated [67]—SN 2024abfl clearly displayed a broad “ledge.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes twin” to SN 2005cs. Unlike the ambiguous early spectra of SN 2005cs—where the origin of similar features remained debated [67]—SN 2024abfl clearly displayed a broad “ledge

Reference 4

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Observation abbcd8c4-1c71-406a-96c6-8c15e3ce6466 · outbound

This paper cites an unresolved cited work.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unresolved cited work

Reference 5

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Observation 14db7627-2436-4dfb-8a88-9a3b667dfba7 · outbound

This paper cites latent mixup.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes latent mixup

Reference 6

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Observation 9527503b-b460-48a5-91f5-2c65e8d583de · outbound

This paper cites LSST: from Science Drivers to Reference Design and Anticipated Data Products.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes LSST: from Science Drivers to Reference Design and Anticipated Data Products

Reference 7

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Observation c33d29a1-d310-4683-be8b-781b2030eb22 · outbound

This paper cites The Zwicky Transient Facility: System Overview, Performance, and First Results.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The Zwicky Transient Facility: System Overview, Performance, and First Results

Reference 8

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Observation c6a216cd-501b-4a30-96f6-d85073464a5a · outbound

This paper cites The Zwicky Transient Facility Bright Transient Survey. II. A Public Statistical Sample for Exploring Supernova Demographics.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The Zwicky Transient Facility Bright Transient Survey. II. A Public Statistical Sample for Exploring Supernova Demographics

Reference 9

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Observation 42835143-ca6b-4c98-898b-ff066237c5eb · outbound

This paper cites MOSFiT: Modular Open-Source Fitter for Transients.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes MOSFiT: Modular Open-Source Fitter for Transients

Reference 10

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Observation a3083e82-38d2-4340-87ab-7f1aef89e4af · outbound

This paper cites Redback: A Bayesian inference software package for electromagnetic transients.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Redback: A Bayesian inference software package for electromagnetic transients

Reference 11

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Observation 4c9ebfba-91c7-4794-b02a-bb76ba5733e3 · outbound

This paper cites Nearby Supernova Rates from the Lick Observatory Supernova Search. II. The Observed Luminosity Functions and Fractions of Supernovae in a Complete Sample.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Nearby Supernova Rates from the Lick Observatory Supernova Search. II. The Observed Luminosity Functions and Fractions of Supernovae in a Complete Sample

Reference 12

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Observation 30954750-69d0-4370-bdcb-47fba1b68932 · outbound

This paper cites Photometric and Spectroscopic Properties of Type II-P Supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Photometric and Spectroscopic Properties of Type II-P Supernovae

Reference 13

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Observation 2ce76579-8a05-4f91-b148-27b7b6c080d0 · outbound

This paper cites Characterizing the V-band light-curves of hydrogen-rich type II supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Characterizing the V-band light-curves of hydrogen-rich type II supernovae

Reference 14

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Observation fda0e59f-a8fe-4382-8801-bdb2bcd78731 · outbound

This paper cites Towards Characterization of the Type IIP Supernova Progenitor Population: a Statistical Sample of Light Curves from Pan-STARRS1.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Towards Characterization of the Type IIP Supernova Progenitor Population: a Statistical Sample of Light Curves from Pan-STARRS1

Reference 15

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Observation 0a6df4d6-7326-43f2-a737-4c78cba73fc6 · outbound

This paper cites The diversity of Type II supernova versus the similarity in their progenitors.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The diversity of Type II supernova versus the similarity in their progenitors

Reference 16

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Observation 5277564d-bc67-4e73-ba13-724a112fd1a2 · outbound

This paper cites Type II supernova spectral diversity I: Observations, sample characterization and spectral line evolution.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Type II supernova spectral diversity I: Observations, sample characterization and spectral line evolution

Reference 17

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Observation 567cff1a-b902-4ad6-9583-66f966c9adc1 · outbound

This paper cites On the photometric and spectroscopic diversity of Type II supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes On the photometric and spectroscopic diversity of Type II supernovae

Reference 18

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Observation fb75b1f4-39ea-4520-88ab-8a19ff9ad65e · outbound

This paper cites Type II supernovae from the Carnegie Supernova Project-I. I. Bolometric light curves of 74 SNe II using uBgVriYJH photometry.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Type II supernovae from the Carnegie Supernova Project-I. I. Bolometric light curves of 74 SNe II using uBgVriYJH photometry

Reference 19

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Observation 5d8b40ca-e949-4b24-b9bc-6768cc42f836 · outbound

This paper cites Ertini, J.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Ertini, J

Reference 20

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Observation 4ace271e-743f-4e05-8c7e-5e156d3b1174 · outbound

This paper cites Type II-Plateau supernova radiation: dependencies on progenitor and explosion properties.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Type II-Plateau supernova radiation: dependencies on progenitor and explosion properties

Reference 21

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Observation eeeff09e-d99e-4f7e-ab69-1e227a47a5a9 · outbound

This paper cites The difficulty of inferring progenitor masses from Type II-Plateau supernova light curves.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The difficulty of inferring progenitor masses from Type II-Plateau supernova light curves

Reference 22

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Observation 103938b4-dd89-40e2-adf7-020f1cec764c · outbound

This paper cites Inferring Explosion Properties from Type II-Plateau Supernova Light Curves.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Inferring Explosion Properties from Type II-Plateau Supernova Light Curves

Reference 23

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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Martinez, M

Reference 24

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This paper cites Type II supernovae from the Carnegie Supernova Project-I. II. Physical parameter distributions from hydrodynamical modelling.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Type II supernovae from the Carnegie Supernova Project-I. II. Physical parameter distributions from hydrodynamical modelling

Reference 25

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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unresolved cited work

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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unresolved cited work

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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unresolved cited work

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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unresolved cited work

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This paper cites Mass Loss: Its Effect on the Evolution and Fate of High-Mass Stars.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Mass Loss: Its Effect on the Evolution and Fate of High-Mass Stars

Reference 30

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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes A Wolf-Rayet-like progenitor of supernova SN 2013cu from spectral observations of a wind

Reference 31

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This paper cites Flash Spectroscopy: Emission Lines from the Ionized Circumstellar Material around $<10$-Day-Old Type II Supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Flash Spectroscopy: Emission Lines from the Ionized Circumstellar Material around $<10$-Day-Old Type II Supernovae

Reference 32

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This paper cites Smith, inHandbook of Supernovae, edited by A.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Smith, inHandbook of Supernovae, edited by A

Reference 33

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This paper cites Interacting supernovae from wide massive binary systems.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Interacting supernovae from wide massive binary systems

Reference 34

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Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Supernovae from Red Supergiants with Extensive Mass Loss

Reference 35

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This paper cites Explosion of red-supergiant stars: influence of the atmospheric structure on shock breakout and the early-time supernova radiation.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Explosion of red-supergiant stars: influence of the atmospheric structure on shock breakout and the early-time supernova radiation

Reference 36

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source=pdf_text observed=2026-08-01T17:54:01.761642Z digest=sha256:5e93224d9a1a08ca6b4d93b45272d10eb8696a492af7ef70bf517aed56225a5a

Observation 39a5a211-6433-4a8d-9c01-c77dc8b9658a · outbound

This paper cites The delay of shock breakout due to circumstellar material seen in most Type II Supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The delay of shock breakout due to circumstellar material seen in most Type II Supernovae

Reference 37

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source=pdf_text observed=2026-08-01T17:54:01.859342Z digest=sha256:84fd33e17f99c280256a562289c10f703cea08abbdd79d9d208372cb119d37d8

Observation 1956fe1d-975a-445b-b367-07fb7d80a0cd · outbound

This paper cites Type IIP supernova light curves affected by the acceleration of red supergiant winds.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Type IIP supernova light curves affected by the acceleration of red supergiant winds

Reference 38

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source=pdf_text observed=2026-08-01T17:54:01.958892Z digest=sha256:b2004ade206fa7e84cb5f1844de87ef25d4cefe16b75d3c74b55444f4bfab606

Observation 87b8544c-1892-49c9-a4b8-a9bb006726c2 · outbound

This paper cites Progenitors of early-time interacting supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Progenitors of early-time interacting supernovae

Reference 39

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no resolver link, observed 2026-08-01T17:54:02.056865Z

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source=pdf_text observed=2026-08-01T17:54:02.056865Z digest=sha256:80da5e0b32047578dd8114954a84c73640fb3c849b6724bd44d8e23c184a7d35

Observation cbf3caa2-e571-4c0b-a906-9c8407560554 · outbound

This paper cites A large fraction of hydrogen-rich supernova progenitors experience elevated mass loss shortly prior to explosion.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes A large fraction of hydrogen-rich supernova progenitors experience elevated mass loss shortly prior to explosion

Reference 40

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source=pdf_text observed=2026-08-01T17:54:02.151261Z digest=sha256:c82fe59af4432cfcb6b5468efb1a8a19700dc602b88d9d6335124d5551edd8a6

Observation 93fd9d8d-a729-4221-bd61-01452b298762 · outbound

This paper cites Unifying Type II Supernova Light Curves with Dense Circumstellar Material.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unifying Type II Supernova Light Curves with Dense Circumstellar Material

Reference 41

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no resolver link, observed 2026-08-01T17:54:02.244402Z

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source=pdf_text observed=2026-08-01T17:54:02.244402Z digest=sha256:e74ea511af8bdfd125d37aef403a254b7c7407d4d3e1416c8688cafd2efc3849

Observation 9393b4ff-f504-4882-9067-a40ee737ae70 · outbound

This paper cites Measuring the Progenitor Masses and Dense Circumstellar Material of Type II Supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Measuring the Progenitor Masses and Dense Circumstellar Material of Type II Supernovae

Reference 42

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no resolver link, observed 2026-08-01T17:54:02.352205Z

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source=pdf_text observed=2026-08-01T17:54:02.352205Z digest=sha256:ac65d02d2a8e6ca138c8817d10dec5057769ad9b2bfb62538c719d3736085e5b

Observation 67380162-ca51-446f-99d7-bf57b862584f · outbound

This paper cites Final Moments II: Observational Properties and Physical Modeling of CSM-Interacting Type II Supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Final Moments II: Observational Properties and Physical Modeling of CSM-Interacting Type II Supernovae

Reference 43

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unresolved
no resolver link, observed 2026-08-01T17:54:02.473177Z

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source=pdf_text observed=2026-08-01T17:54:02.473177Z digest=sha256:f4d93b32f017fe7b087f6abc20819629d147e99da9d68d1c36613846987e8759

Observation 3e9b42e7-06b9-4993-ae7e-5d21e50d8a56 · outbound

This paper cites Physics of Luminous Transient Light Curves: A New Relation Between Peak Time and Luminosity.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Physics of Luminous Transient Light Curves: A New Relation Between Peak Time and Luminosity

Reference 44

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no resolver link, observed 2026-08-01T17:54:02.642908Z

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source=pdf_text observed=2026-08-01T17:54:02.642908Z digest=sha256:29ac750aef7a396f37653588ce3a3b5eb2aa913c07ca1a84dd7cb1c62b88f658

Observation 91bd94f3-5ddd-44c5-8c67-5be9142866e0 · outbound

This paper cites Using spectral modeling to break light-curve degeneracies of type II supernovae interacting with circumstellar material.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Using spectral modeling to break light-curve degeneracies of type II supernovae interacting with circumstellar material

Reference 45

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no resolver link, observed 2026-08-01T17:54:02.745467Z

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source=pdf_text observed=2026-08-01T17:54:02.745467Z digest=sha256:78d0a3d0c6050dafda56a9d841924f527d8147e833a69db53ccbbe38291f2d87

Observation 58ce0855-79fa-46b5-84f7-4b913f69a878 · outbound

This paper cites A comparative modeling of supernova 1993J.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes A comparative modeling of supernova 1993J

Reference 46

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no resolver link, observed 2026-08-01T17:54:02.852248Z

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source=pdf_text observed=2026-08-01T17:54:02.852248Z digest=sha256:7a5425e1ed131cbbff6b612cda2b15df515da5f9fd6053a14361bd70ee5118bb

Observation 31148591-f885-4a89-af0c-e4a9afbb4769 · outbound

This paper cites Radiation hydrodynamics of SN 1987A: I. Global analysis of the light curve for the first 4 months.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Radiation hydrodynamics of SN 1987A: I. Global analysis of the light curve for the first 4 months

Reference 47

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no resolver link, observed 2026-08-01T17:54:02.945080Z

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source=pdf_text observed=2026-08-01T17:54:02.945080Z digest=sha256:0e88fd4221a56570835cbb49575cc19be72b0f0b83f4546813709f3ed17e9729

Observation 0321516d-9f7b-4647-a636-28e664f106dc · outbound

This paper cites Theoretical light curves for deflagration models of Type Ia supernova.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Theoretical light curves for deflagration models of Type Ia supernova

Reference 48

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no resolver link, observed 2026-08-01T17:54:03.048694Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T17:54:03.048694Z digest=sha256:a05e02a7ae5c1a76171f1f8c80be5c71ee4a904d014b8e6684523534f55fba87

Observation 2d0d1cfd-599e-4dc1-9404-2d38c1cf796d · outbound

This paper cites Synthetic red supergiant explosion model grid for systematic characterization of Type II supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Synthetic red supergiant explosion model grid for systematic characterization of Type II supernovae

Reference 49

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no resolver link, observed 2026-08-01T17:54:03.161644Z

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source=pdf_text observed=2026-08-01T17:54:03.161644Z digest=sha256:0f7ffc776e4ccfc63c3deb33510e0d5956ad43509015c74d833472f5afe1e844

Observation fe1abac6-c727-4b40-9852-eeb5f8b58110 · outbound

This paper cites Inferencing Progenitor and Explosion Properties of Evolving Core-collapse Supernovae from Zwicky Transient Facility Light Curves.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Inferencing Progenitor and Explosion Properties of Evolving Core-collapse Supernovae from Zwicky Transient Facility Light Curves

Reference 50

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unresolved
no resolver link, observed 2026-08-01T17:54:03.249836Z

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source=pdf_text observed=2026-08-01T17:54:03.249836Z digest=sha256:be7b5456461ec27e6ed28e32bd7a3712433b5bb742768043ef46b17836fdd63e

Observation a8ec487b-b876-4f0c-9c92-a0a0c85cf356 · outbound

This paper cites Physical Properties of Type II Supernovae Inferred from ZTF and ATLAS Photometric Data.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Physical Properties of Type II Supernovae Inferred from ZTF and ATLAS Photometric Data

Reference 51

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no resolver link, observed 2026-08-01T17:54:03.345865Z

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source=pdf_text observed=2026-08-01T17:54:03.345865Z digest=sha256:f4560e18d9f453565ea31c5069f8cb7f6cb2a179e8514dcd507904f11fce10e3

Observation 1a471c14-df02-416d-b997-d39d00a4b504 · outbound

This paper cites Inferring CSM Properties of Type II SNe Using a Magnitude-Limited ZTF Sample.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Inferring CSM Properties of Type II SNe Using a Magnitude-Limited ZTF Sample

Reference 52

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unresolved
no resolver link, observed 2026-08-01T17:54:03.444818Z

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source=pdf_text observed=2026-08-01T17:54:03.444818Z digest=sha256:ce9117f510a3940659e93b1932aa8e13716627b052e8c385c33edbe2e1a70d55

Observation 5c9f0e54-90f6-4292-9764-be283fefb6c2 · outbound

This paper cites Progenitor and explosion properties of SN 2023ixf estimated based on a light-curve model grid of Type II supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Progenitor and explosion properties of SN 2023ixf estimated based on a light-curve model grid of Type II supernovae

Reference 53

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no resolver link, observed 2026-08-01T17:54:03.539961Z

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source=pdf_text observed=2026-08-01T17:54:03.539961Z digest=sha256:25a55021461a65f6c4ab975064d40804a302d12c82d5ab3c5553bdd597e450d5

Observation a354d968-8e5f-4294-8781-afaf7f1b77c2 · outbound

This paper cites Diversity in hydrogen-rich envelope mass of type II supernovae (II): SN 2023ixf as explosion of partially-stripped intermediate massive star.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Diversity in hydrogen-rich envelope mass of type II supernovae (II): SN 2023ixf as explosion of partially-stripped intermediate massive star

Reference 54

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unresolved
no resolver link, observed 2026-08-01T17:54:03.655414Z

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source=pdf_text observed=2026-08-01T17:54:03.655414Z digest=sha256:bad08856987bca637d332546195f88cc7eb8a6cf6bd6fab63b6ef7a595a271be

Observation 275a0bc3-0b20-45a5-8acc-8156c5051d8f · outbound

This paper cites One Year of SN 2023ixf: Breaking Through the Degenerate Parameter Space in Light-Curve Models with Pulsating Progenitors.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes One Year of SN 2023ixf: Breaking Through the Degenerate Parameter Space in Light-Curve Models with Pulsating Progenitors

Reference 55

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unresolved
no resolver link, observed 2026-08-01T17:54:03.736780Z

Source-reported events for the cited work

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source=pdf_text observed=2026-08-01T17:54:03.736780Z digest=sha256:02b0e1159e00e0d42229d5396eb3afb52119a5ff7ff8b94240fa127ce7097900

Observation d628d38f-3d39-4c8e-b98f-01ab72b10469 · outbound

This paper cites SN 2023ixf -- an average-energy explosion with circumstellar medium and a precursor.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes SN 2023ixf -- an average-energy explosion with circumstellar medium and a precursor

Reference 56

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unresolved
no resolver link, observed 2026-08-01T17:54:03.869921Z

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source=pdf_text observed=2026-08-01T17:54:03.869921Z digest=sha256:8d4bcc85f0af1c11764ae9020db6526cfb11a4a3fa42f928178e7e12af8863e2

Observation e8d7e94a-bcc0-4b15-8697-1a3c4adf4768 · outbound

This paper cites Modeling Supernova 2023ixf: Lightcurve Degeneracies and Morphological Differences.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Modeling Supernova 2023ixf: Lightcurve Degeneracies and Morphological Differences

Reference 57

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no resolver link, observed 2026-08-01T17:54:03.960727Z

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source=pdf_text observed=2026-08-01T17:54:03.960727Z digest=sha256:85a1caf0e6f1f43dc34d24e587bab6107ea2786b650db5fe1a0048d27b5b04aa

Observation 36e8438e-e2ca-490a-8518-edca403868e7 · outbound

This paper cites Properties of high-redshift Type II supernovae discovered by the JADES transient survey.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Properties of high-redshift Type II supernovae discovered by the JADES transient survey

Reference 58

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no resolver link, observed 2026-08-01T17:54:04.120432Z

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source=pdf_text observed=2026-08-01T17:54:04.120432Z digest=sha256:837a0103ba0bf90b1a8a13009daab9ca9a2edd07c033b780cfc48b288d8ec834

Observation 88a74602-b36b-4fec-8762-9fbd34f53abc · outbound

This paper cites Discovery of a likely Type II SN at $z$=3.6 with JWST.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Discovery of a likely Type II SN at $z$=3.6 with JWST

Reference 59

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unresolved
no resolver link, observed 2026-08-01T17:54:04.226342Z

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source=pdf_text observed=2026-08-01T17:54:04.226342Z digest=sha256:706fdd498e687d70dc968ea7d0c927c3341319fd651570bc82ee8942022b9813

Observation 43b74670-1fbb-431d-953a-a0aed91d807e · outbound

This paper cites an unresolved cited work.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unresolved cited work

Reference 60

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no resolver link, observed 2026-08-01T17:54:04.302983Z

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source=pdf_text observed=2026-08-01T17:54:04.302983Z digest=sha256:ca7ffa0fc4dc392894860126cf83136f0b250a3de093e26b9a48ef2bfb3f603c

Observation e07365a1-5be2-4ceb-9e8d-66219aedbc02 · outbound

This paper cites Sarin, T.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Sarin, T

Reference 61

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unresolved
no resolver link, observed 2026-08-01T17:54:04.367645Z

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source=pdf_text observed=2026-08-01T17:54:04.367645Z digest=sha256:56442b5738e3b136cf1e2f8f195b316176926d6569a3aa9f6019bc9c537051f5

Observation e313578c-a8b7-4b7a-9971-a38729be6f65 · outbound

This paper cites Underluminous Type II Plateau Supernovae: II. Pointing towards moderate mass precursors.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Underluminous Type II Plateau Supernovae: II. Pointing towards moderate mass precursors

Reference 62

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unresolved
no resolver link, observed 2026-08-01T17:54:04.496610Z

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source=pdf_text observed=2026-08-01T17:54:04.496610Z digest=sha256:48c19c008bea242c328e4d5ae8a9af4e525bba3168b2a1a1ee9a8cac2a2817ef

Observation a37babd3-b9d5-467a-b779-dc30cfaac0db · outbound

This paper cites Manifold Mixup: Better Representations by Interpolating Hidden States.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Manifold Mixup: Better Representations by Interpolating Hidden States

Reference 63

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unresolved
no resolver link, observed 2026-08-01T17:54:04.561867Z

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source=pdf_text observed=2026-08-01T17:54:04.561867Z digest=sha256:68bf731188eec8087cb54d4e5e610479f82c7a4f5717362eedf299ef7035a4a3

Observation cb0daac0-5793-4e6b-b4f5-de98fe9155b0 · outbound

This paper cites Understanding and Improving Interpolation in Autoencoders via an Adversarial Regularizer.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Understanding and Improving Interpolation in Autoencoders via an Adversarial Regularizer

Reference 64

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no resolver link, observed 2026-08-01T17:54:04.650686Z

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source=pdf_text observed=2026-08-01T17:54:04.650686Z digest=sha256:172a78095c36abd620fe22a1a506353a725c5c66b2492b0ac68fd10f35d4ba6a

Observation 13c8948e-70bc-46eb-8f6b-70059aa787c6 · outbound

This paper cites Moriya (private communication).

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Moriya (private communication)

Reference 65

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source=pdf_text observed=2026-08-01T17:54:04.730308Z digest=sha256:f41787eed8b09fd610015d38119cce648c6ffd91e6b9e1901d782ebeed7725ec

Observation 1db262f1-5978-4d40-a816-9da8ab241290 · outbound

This paper cites mixup: Beyond Empirical Risk Minimization.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes mixup: Beyond Empirical Risk Minimization

Reference 66

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unresolved
no resolver link, observed 2026-08-01T17:54:04.791353Z

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source=pdf_text observed=2026-08-01T17:54:04.791353Z digest=sha256:5f111fed3fcd1a37ccca717538f6df15594f40c9c8b3e1ec0edef860f881cf70

Observation 1bfe7f7c-d588-4265-a972-4b0bf5dc13aa · outbound

This paper cites SN 2005cs in M51 II. Complete Evolution in the Optical and the Near-Infrared.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes SN 2005cs in M51 II. Complete Evolution in the Optical and the Near-Infrared

Reference 67

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unresolved
no resolver link, observed 2026-08-01T17:54:04.854508Z

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source=pdf_text observed=2026-08-01T17:54:04.854508Z digest=sha256:6da97061c84987eb660c07ff9dabba87da23d9b0a82c21579d25668623e86909

Observation bfd2c631-ab49-4f4c-b6ec-d951b03d16fe · outbound

This paper cites The Progenitor of SN 2005cs in the Whirlpool Galaxy.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The Progenitor of SN 2005cs in the Whirlpool Galaxy

Reference 68

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unresolved
no resolver link, observed 2026-08-01T17:54:04.942650Z

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source=pdf_text observed=2026-08-01T17:54:04.942650Z digest=sha256:e185b7635632ed5b5f8c07708f08c8f854064578ce70aa58c21f2b9b7a94e37c

Observation 628cce84-8ae7-41af-a67f-573876136e25 · outbound

This paper cites Identification of the Red Supergiant Progenitor of Supernova 2005cs: Do the Progenitors of Type II-P Supernovae Have Low Mass?.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Identification of the Red Supergiant Progenitor of Supernova 2005cs: Do the Progenitors of Type II-P Supernovae Have Low Mass?

Reference 69

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unresolved
no resolver link, observed 2026-08-01T17:54:05.007885Z

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source=pdf_text observed=2026-08-01T17:54:05.007885Z digest=sha256:f30481c86818d3e70b505418f0192dc379af2b05d63c26e1458276c826b7e0c0

Observation 9093df52-91e7-4691-8c54-127ca24d8465 · outbound

This paper cites Ruling out a massive-assymptoic giant-branch star as the progenitor of supernova 2005cs.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Ruling out a massive-assymptoic giant-branch star as the progenitor of supernova 2005cs

Reference 70

Resolution
unresolved
no resolver link, observed 2026-08-01T17:54:05.109342Z

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source=pdf_text observed=2026-08-01T17:54:05.109342Z digest=sha256:275041524bcc22688a05a4f2fb66cf05cbf6f7d2d3fae592dc526cdaf68ff118

Observation d1f73cdc-dad4-4440-b875-536ba7b8339e · outbound

This paper cites Progenitor mass of the type IIP supernova 2005cs.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Progenitor mass of the type IIP supernova 2005cs

Reference 71

Resolution
unresolved
no resolver link, observed 2026-08-01T17:54:05.234749Z

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source=pdf_text observed=2026-08-01T17:54:05.234749Z digest=sha256:f16674e08c20553588c12d055e8ecd7ef72902b2d901b0684f2b75c78c47adaf

Observation 20d0a77e-16da-40ad-9eb2-0d52736259ac · outbound

This paper cites Low-luminosity type IIP supernovae: SN 2005cs and SN 2020cxd as very low-energy iron core-collapse explosions.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Low-luminosity type IIP supernovae: SN 2005cs and SN 2020cxd as very low-energy iron core-collapse explosions

Reference 72

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unresolved
no resolver link, observed 2026-08-01T17:54:05.281760Z

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source=pdf_text observed=2026-08-01T17:54:05.281760Z digest=sha256:066a2412902f5bfd5aaca80fbe8fa486c8a154ced807bec685dbe0f9c65e2537

Observation 55d12e3f-8372-433b-a46f-b1eaeffd81e3 · outbound

This paper cites Using Quantitative Spectroscopic Analysis to Determine the Properties and Distances of Type II-Plateau Supernovae: SNe 2005cs and 2006bp.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Using Quantitative Spectroscopic Analysis to Determine the Properties and Distances of Type II-Plateau Supernovae: SNe 2005cs and 2006bp

Reference 73

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source=pdf_text observed=2026-08-01T17:54:05.352992Z digest=sha256:1ec5a4d1170ed9c9c2f7ef83265186d1a2873e9325f843a6fe562c392c439263

Observation e97e93b6-9411-4bce-a266-e2efef6e659e · outbound

This paper cites Gerard, J.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Gerard, J

Reference 74

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no resolver link, observed 2026-08-01T17:54:05.423897Z

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source=pdf_text observed=2026-08-01T17:54:05.423897Z digest=sha256:a320a4264858c5eb90ae931d90327d8ce69bebf8cb1f1f17488db7c62319a837

Observation b5b07bd9-4979-4479-930e-c8384ffffdf1 · outbound

This paper cites an unresolved cited work.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Unresolved cited work

Reference 75

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source=pdf_text observed=2026-08-01T17:54:05.607853Z digest=sha256:35f2ce6674d566f0ac0b6ac87f73443a3c06b16ed9569f9d7a2bc220abdaf86b

Observation e0098efe-6147-4099-b527-ab112ce9875b · outbound

This paper cites Supernova 2012aw - a high-energy clone of archetypal type IIP SN 1999em.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Supernova 2012aw - a high-energy clone of archetypal type IIP SN 1999em

Reference 76

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no resolver link, observed 2026-08-01T17:54:05.746071Z

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source=pdf_text observed=2026-08-01T17:54:05.746071Z digest=sha256:dfdcfc412dd9804c069dcbcdc707b886a5c544e23871ab848b7f5ce0c52bb85d

Observation 85e6089b-7bbf-4d7a-bb90-386818eb250e · outbound

This paper cites Red and dead: The progenitor of SN 2012aw in M95.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Red and dead: The progenitor of SN 2012aw in M95

Reference 77

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no resolver link, observed 2026-08-01T17:54:05.877866Z

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source=pdf_text observed=2026-08-01T17:54:05.877866Z digest=sha256:530d4fda25b257978e4eff05b012fa595c6b6cf1d59ba3bfdbf8a0f36db39ff8

Observation b2932684-c234-4b11-970c-1f935c1152f6 · outbound

This paper cites On Absorption by Circumstellar Dust, With the Progenitor of SN2012aw as a Case Study.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes On Absorption by Circumstellar Dust, With the Progenitor of SN2012aw as a Case Study

Reference 78

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no resolver link, observed 2026-08-01T17:54:06.012631Z

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source=pdf_text observed=2026-08-01T17:54:06.012631Z digest=sha256:e85b63c4cd62e82939471a018e11e7ca12e4154bff16ac37ac3d392adf256bf7

Observation 802f4ff2-e4d1-4b93-bfa7-04b231229dd8 · outbound

This paper cites The disappearance of the progenitor of SN 2012aw in late-time imaging.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The disappearance of the progenitor of SN 2012aw in late-time imaging

Reference 79

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no resolver link, observed 2026-08-01T17:54:06.085770Z

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source=pdf_text observed=2026-08-01T17:54:06.085770Z digest=sha256:da8f38d60d59c69ffa5e1e71b8379284b5c106f817acb4f2090afac334f04550

Observation 135374d2-c6f7-41ae-b756-11f2e9441646 · outbound

This paper cites The Type IIP Supernova 2012aw in M95: hydrodynamical modelling of the photospheric phase from accurate spectrophotometric monitoring.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The Type IIP Supernova 2012aw in M95: hydrodynamical modelling of the photospheric phase from accurate spectrophotometric monitoring

Reference 80

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no resolver link, observed 2026-08-01T17:54:06.153409Z

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source=pdf_text observed=2026-08-01T17:54:06.153409Z digest=sha256:baaf328fc344204b2a61a6c2821582dea3a1dc8800eeecd9126055bc8f2bbe1f

Observation a6b232c9-60b7-4231-8d4f-e3f3fd128123 · outbound

This paper cites Electron Cooling in a Young Radio Supernova: SN 2012aw.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Electron Cooling in a Young Radio Supernova: SN 2012aw

Reference 81

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unresolved
no resolver link, observed 2026-08-01T17:54:06.247089Z

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source=pdf_text observed=2026-08-01T17:54:06.247089Z digest=sha256:ae8902264889cc0c550bdd6bb2a9597df5a18fa054bd305c5e3dfdbf04bf5f64

Observation 474be777-3fff-4c8c-a1f5-8deb7aec07a0 · outbound

This paper cites Elmhamdi, I.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Elmhamdi, I

Reference 82

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no resolver link, observed 2026-08-01T17:54:06.377369Z

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source=pdf_text observed=2026-08-01T17:54:06.377369Z digest=sha256:81d3884fa612d27a60f01e68fd91dd921cb44fb9d6fbcd42f787d2f247af539a

Observation 593e53ea-1c5e-4063-8927-0b5dab3c2159 · outbound

This paper cites Hydrodynamical models of Type II-Plateau Supernovae.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Hydrodynamical models of Type II-Plateau Supernovae

Reference 83

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no resolver link, observed 2026-08-01T17:54:06.470650Z

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source=pdf_text observed=2026-08-01T17:54:06.470650Z digest=sha256:0a889827eac9c0ae1515d057bebeffcb72e597a84b30b2975fa5d72f176950ad

Observation 03c317eb-0cd3-40c8-a83f-c0c39c816dd5 · outbound

This paper cites The nature of the progenitor of the Type II-P supernova 1999em.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes The nature of the progenitor of the Type II-P supernova 1999em

Reference 84

Resolution
unresolved
no resolver link, observed 2026-08-01T17:54:06.607400Z

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source=pdf_text observed=2026-08-01T17:54:06.607400Z digest=sha256:ccaedf36f5f21e27fd3987b7aa27a5dff9e9efb82d6fdbdb561f92c1b5490694

Observation 4ce63e91-b111-4f0f-8a16-a5ce1dc3011d · outbound

This paper cites Quantitative spectroscopic analysis of and distance to SN1999em.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Quantitative spectroscopic analysis of and distance to SN1999em

Reference 85

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no resolver link, observed 2026-08-01T17:54:06.768146Z

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source=pdf_text observed=2026-08-01T17:54:06.768146Z digest=sha256:eb9fed1b03dd24d1e811b24ea1d6d8e02436adf874cf1575701b56bb658dfea9

Observation 294285a3-d315-40cf-ab95-f0af7bfd5098 · outbound

This paper cites Discovery of Extensive Optical Emission Associated with the X-ray Bright, Radio Faint Galactic SNR G156.2+5.7.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Discovery of Extensive Optical Emission Associated with the X-ray Bright, Radio Faint Galactic SNR G156.2+5.7

Reference 86

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unresolved
no resolver link, observed 2026-08-01T17:54:06.867999Z

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source=pdf_text observed=2026-08-01T17:54:06.867999Z digest=sha256:01750c131dfbb56fe2a7cff0bf3794f221ac8bab2cfc712deb381945cc3cd0d9

Observation d371e5f4-c1d4-424a-baac-71268bd37b7d · outbound

This paper cites X-ray, Optical, and Radio Observations of the Type II Supernovae 1999em and 1998S.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes X-ray, Optical, and Radio Observations of the Type II Supernovae 1999em and 1998S

Reference 87

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no resolver link, observed 2026-08-01T17:54:07.029506Z

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source=pdf_text observed=2026-08-01T17:54:07.029506Z digest=sha256:fe03c082ed56b9e13e877d0dd260e580636a4d1ce2efc5ab7030d85577bcef55

Observation 534995c8-782e-4d4c-a917-0ee09a5f6e33 · outbound

This paper cites Network Topology of an Experimental Futures Exchange.

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Network Topology of an Experimental Futures Exchange

Reference 88

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source=pdf_text observed=2026-08-01T17:54:07.183877Z digest=sha256:3e7899cbaaeac57e456299815347591a1a1b1265912fb02eb7e759720316e434

Observation 205d78d5-ac58-4e3c-82b5-8264a065bebe · outbound

This paper cites Zhanget al.(to be published).

Surrogate models for type II supernovae: Probing low-energy explosions and interaction-free regimes Zhanget al.(to be published)

Reference 89

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source=pdf_text observed=2026-08-01T17:54:07.331626Z digest=sha256:bc0f328763554e7ea1364ad5a7b2ad844e3ff4b71d0419e319e7268d58069579

Pith citing papers

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