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Paper Citation Record · LEDGER

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity

As of 10 August 2026, this Paper Citation Record lists 100 of 296 outbound references and 0 inbound Pith citation observations for arXiv:2607.18176.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2607.18176 v1

Coverage vector

measured 100 of 296 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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measured 0 of 1 external citation measurements

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Source: cited_works

Reference resolution

100 of 296 outbound references displayed

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External citation measurements

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Outbound references

Observation c5a95dac-7cb4-4dae-ba75-133d58987eca · outbound

This paper cites an unresolved cited work.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 1

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Observation 93b01dff-4fe8-479e-8eda-3a84cc982587 · outbound

This paper cites Bryan and Michael L.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Bryan and Michael L

Reference 2

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Observation e9c8c562-3d90-4f56-acd7-bfb8ad77e1dc · outbound

This paper cites 2025 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2025 , eprint=

Reference 3

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Observation 538d4247-a51c-49fa-8abd-6a3db8484c8a · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 4

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Observation 812c4e22-93bf-47c3-ae00-cfb2f6fae2ad · outbound

This paper cites 2021 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2021 , eprint=

Reference 5

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Observation 7d376362-d1cb-49cc-840a-c5ede0567807 · outbound

This paper cites Simulating self-gravitating hydrodynamic flows , journal =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Simulating self-gravitating hydrodynamic flows , journal =

Reference 6

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Observation ca4953f0-22bc-4c63-b603-828a510760a5 · outbound

This paper cites A New Way to Conserve Total Energy for Eulerian Hydrodynamic Simulations with Self-Gravity.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity A New Way to Conserve Total Energy for Eulerian Hydrodynamic Simulations with Self-Gravity

Reference 7

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Observation a2d6057c-e17c-42ef-aa67-d650b2ad913b · outbound

This paper cites Remarks on the solution of poisson's equation for isolated systems , journal =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Remarks on the solution of poisson's equation for isolated systems , journal =

Reference 8

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Observation 1044ede6-3b5f-4722-9f02-363a43639038 · outbound

This paper cites Journal of Computational Physics , year = 1977, month = oct, volume =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Journal of Computational Physics , year = 1977, month = oct, volume =

Reference 9

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Observation da29501c-1808-40f4-a85c-c0d4670ed073 · outbound

This paper cites , title =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity , title =

Reference 10

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Observation 6fa4bb52-71fd-4d1b-ba59-b3ab6121f9b5 · outbound

This paper cites Multi-Level Adaptive Solutions to Boundary-Value Problems , urldate =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Multi-Level Adaptive Solutions to Boundary-Value Problems , urldate =

Reference 11

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Observation b6c6791e-7560-4b53-ab02-fedd26545549 · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 12

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Observation 436a7ed0-f19f-4c3b-8f66-a948078e9fa0 · outbound

This paper cites Euler Equations, Navier-Stokes Equations and Turbulence , ISBN =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Euler Equations, Navier-Stokes Equations and Turbulence , ISBN =

Reference 13

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity , options =

Reference 14

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Observation 4256a058-8a65-403a-9b49-39313ef306fa · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2024 , eprint=

Reference 15

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Observation 6635af50-adf4-4741-a1bf-ece94c1da526 · outbound

This paper cites Matemati.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Matemati

Reference 16

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Observation 9addd6e9-149f-4d61-8b5c-f6f2233eea6a · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2018 , eprint=

Reference 17

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Observation 0fb8ea60-1d96-4007-bd78-03a447b281c7 · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Il Nuovo Cimento (1943-1954) , volume=

Reference 18

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity , abstract =

Reference 19

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Observation bbbd6716-ed0e-4820-9cfe-1fba979a60c7 · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Annual Review of Astronomy and Astrophysics , volume=

Reference 20

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Observation 75952ad7-03a6-49ea-aa74-375b522fa7ca · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 1900 , month = aug, day =

Reference 21

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity A Self-gravity Module for the PLUTO Code , volume=

Reference 22

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Observation 27252322-5b76-4fd4-9d48-aba84c903d72 · outbound

This paper cites Turbulence in the Solar Wind.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Turbulence in the Solar Wind

Reference 23

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Taetz, Bertram , year=

Reference 24

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2015 , month = feb, url =

Reference 25

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This paper cites Simulations and Theory of Ion Injection at Non-relativistic Collisionless Shocks.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Simulations and Theory of Ion Injection at Non-relativistic Collisionless Shocks

Reference 26

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Reference 27

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity The Astrophysical Journal , keywords =

Reference 28

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Powell and Philip L

Reference 29

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Reference 30

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Dedner and F

Reference 31

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 1980 , issn =

Reference 32

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Magnetohydrodynamics on an unstructured moving grid: MHD on an unstructured moving grid , volume=

Reference 33

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2016 , eprint=

Reference 34

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Reference 35

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Reference 36

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Aerodynamic design via control theory , volume =

Reference 37

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Observation f8a815f9-3992-40b8-9a14-f17446dc441d · outbound

This paper cites Algorithms for PDE‐constrained optimization , volume =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Algorithms for PDE‐constrained optimization , volume =

Reference 38

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Observation 2562c7e3-08e0-46ae-baa0-edd02f48d196 · outbound

This paper cites , year =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity , year =

Reference 39

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Observation 17a4de07-0ae9-45f5-b7de-04f151324340 · outbound

This paper cites Differentiable cosmological hydrodynamics for field level inference and high dimensional parameter constraints , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Differentiable cosmological hydrodynamics for field level inference and high dimensional parameter constraints , volume=

Reference 40

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Observation a5620cac-d4f8-4415-b430-a852b6bbdf1c · outbound

This paper cites , year =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity , year =

Reference 41

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Observation 62821992-573e-4ad4-966f-b2605e5d607e · outbound

This paper cites an unresolved cited work.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 42

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Source-reported events for the cited work

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Observation 3b34600f-82e9-472f-ace4-068e751c7f93 · outbound

This paper cites STARFORGE: Towards a comprehensive numerical model of star cluster formation and feedback , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity STARFORGE: Towards a comprehensive numerical model of star cluster formation and feedback , volume=

Reference 43

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Observation 60e14745-4b14-45ed-bece-634b0462197e · outbound

This paper cites 2017 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2017 , eprint=

Reference 44

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Observation 79813842-a6e8-4871-b692-61f09155173f · outbound

This paper cites Astronomy and Astrophysics , keywords =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Astronomy and Astrophysics , keywords =

Reference 45

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Observation 35a53890-5342-4ab8-92a2-773c39ced260 · outbound

This paper cites 2017 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2017 , eprint=

Reference 46

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Observation 37af2939-3ca1-4190-9ba8-5a2f16f7affd · outbound

This paper cites and Villar, Soledad , title =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Villar, Soledad , title =

Reference 47

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source=arxiv_source observed=2026-08-01T15:55:28.163678Z digest=sha256:bb6642bef57000fc928e50921827d3136a3db169338bb0b57b074e7b6dd4a07f

Observation 006f9def-8f5e-41b4-85f4-34ceb3fc7e06 · outbound

This paper cites Theoretical Challenges in Galaxy Formation.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Theoretical Challenges in Galaxy Formation

Reference 48

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source=arxiv_source observed=2026-08-01T15:55:28.238210Z digest=sha256:13c68296aa73ff37993c596de33c052550a2abe1e8f41b1b42c66c49bf5c81ab

Observation d7e83d64-78da-4e76-a3a1-2fc7058c4344 · outbound

This paper cites and Mackey, Jonathan and Grassitelli, Luca and Romano-Díaz, Emilio and Porciani, Cristiano , year=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Mackey, Jonathan and Grassitelli, Luca and Romano-Díaz, Emilio and Porciani, Cristiano , year=

Reference 49

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source=arxiv_source observed=2026-08-01T15:55:28.310195Z digest=sha256:5713ad0bbb60802d4b5bb6033f56b158a359bf088e9d6169da3428d8e6f9d8cc

Observation e36b8ae9-e671-4c4d-af9c-3bf979be4fdd · outbound

This paper cites and Vieu, T.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Vieu, T

Reference 50

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no resolver link, observed 2026-08-01T15:55:28.398343Z

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source=arxiv_source observed=2026-08-01T15:55:28.398343Z digest=sha256:d6c139430004676cd5afa73bfe0326e4aaccc464b339a6464867d867857eece5

Observation 5b867feb-972c-4f71-96ba-851899ea4b62 · outbound

This paper cites Stellar feedback efficiencies: supernovae versus stellar winds.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Stellar feedback efficiencies: supernovae versus stellar winds

Reference 51

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source=arxiv_source observed=2026-08-01T15:55:28.488956Z digest=sha256:8fe05ff4e6c3b6d955a47e6074ae8688719f73adf4d1d88af8318f95f3251aa7

Observation f27dc977-720b-4950-900a-3451b569b10d · outbound

This paper cites The contribution of winds from star clusters to the Galactic cosmic-ray population , volume =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity The contribution of winds from star clusters to the Galactic cosmic-ray population , volume =

Reference 52

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source=arxiv_source observed=2026-08-01T15:55:28.562219Z digest=sha256:f6c16ddda080a5d097fdbd97030d7a6210f8303d9ca32e2b27074a9560578ce9

Observation 4cb737c4-fe0b-4ad3-9613-73cf28d9f682 · outbound

This paper cites How to inflate a wind-blown bubble , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity How to inflate a wind-blown bubble , volume=

Reference 53

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source=arxiv_source observed=2026-08-01T15:55:28.633110Z digest=sha256:d9d188793b2baa52359eb77515a82846fc89a6d5a2192d78a7e23e1b9cec24e6

Observation 521894b3-a514-4969-9b45-1cb4c9506285 · outbound

This paper cites Enhanced fifth order WENO shock-capturing schemes with deep learning , journal =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Enhanced fifth order WENO shock-capturing schemes with deep learning , journal =

Reference 54

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source=arxiv_source observed=2026-08-01T15:55:28.701335Z digest=sha256:afea5e014abcb8cecd4910c5d207076fa02eb000f89e1a6e71d8aa12656b6111

Observation 6853a153-646a-42f4-b10f-3b09020a4e7c · outbound

This paper cites Towards the Ultimate Conservative Difference Scheme. V. A Second-Order Sequel to Godunov's Method.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Towards the Ultimate Conservative Difference Scheme. V. A Second-Order Sequel to Godunov's Method

Reference 55

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source=arxiv_source observed=2026-08-01T15:55:28.766359Z digest=sha256:aaf083eb793b831013dafa489834b3e2347372d7e0caff6cc504130fd0f7c5b7

Observation e260e29f-aa1e-4f00-a183-423fddef77af · outbound

This paper cites and Iapichino, Luigi and Beattie, James R.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Iapichino, Luigi and Beattie, James R

Reference 56

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source=arxiv_source observed=2026-08-01T15:55:28.841081Z digest=sha256:eecb531eb1c0023c41ffb176c1a44779fde47eea2cb2afe318702a7b560dba22

Observation 53a0e734-6be4-4ef3-b78b-c38db6a3d17f · outbound

This paper cites 2024 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2024 , eprint=

Reference 57

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source=arxiv_source observed=2026-08-01T15:55:28.915611Z digest=sha256:046a447b37fed1417481c7c97328ab655279ee279d1e15ee5b604c14a52be674

Observation a66ca5fb-49ae-4708-8513-b7dc6b994077 · outbound

This paper cites Monthly Notices of the Royal Astronomical Society , keywords =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Monthly Notices of the Royal Astronomical Society , keywords =

Reference 58

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source=arxiv_source observed=2026-08-01T15:55:28.987913Z digest=sha256:55797ff7acde932a1709dd62318f025dedb1b86c7e8e8ae2574dc2400bae4ba8

Observation 0aeea1d3-88b8-4201-b0de-d920d3ffdd76 · outbound

This paper cites 2011 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2011 , eprint=

Reference 59

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source=arxiv_source observed=2026-08-01T15:55:29.061610Z digest=sha256:e7d8fab49ceb5b422b619cc12e17a85cb5765e1b5512fd3d687bf02ea6bc259d

Observation 0ff09191-8913-4694-b170-8c0939fe5ddd · outbound

This paper cites and Makino, Junichiro , year=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Makino, Junichiro , year=

Reference 60

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Observation 82fa5f9e-8a73-492b-8002-eb281c91bd85 · outbound

This paper cites ExactPack: A python library of exact analytic solutions , journal =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity ExactPack: A python library of exact analytic solutions , journal =

Reference 62

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Observation a54a8c20-559a-40b7-b768-493396425726 · outbound

This paper cites 2017 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2017 , eprint=

Reference 63

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source=arxiv_source observed=2026-08-01T15:55:29.320316Z digest=sha256:527b968524fd52091ed7887428f81fddef5b09baba54bfa34dc1a7334ffc9441

Observation debb83a3-ad2c-439d-adcb-e49d27efa499 · outbound

This paper cites Machine learning changes the rules for flux limiters , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Machine learning changes the rules for flux limiters , volume=

Reference 64

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correction dated 2023-08-08. Source: crossref record 10.1063/5.0152384->10.1063/5.0102939:correction, observed 2026-07-11T03:14:04.454137+00:00. This notice travels one citation hop only.

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Observation b6961b59-f561-4872-bc91-e88a824210ce · outbound

This paper cites an unresolved cited work.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 65

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Observation 40741d7f-acab-44e7-98c6-9ec78105dd20 · outbound

This paper cites and Clarke, N.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Clarke, N

Reference 66

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source=arxiv_source observed=2026-08-01T15:55:29.531826Z digest=sha256:b48bfc026592ee3bd9d5a3e18425f753f6b5c9a511f5b6fc89be6d3658246706

Observation e8017675-2d15-4d4d-9330-dc275744f6fd · outbound

This paper cites Numerische mathematik , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Numerische mathematik , volume=

Reference 67

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Observation d95ca82e-8bd2-49a9-a4b7-0edd00db02f3 · outbound

This paper cites Least Squares Shadowing sensitivity analysis of chaotic limit cycle oscillations , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Least Squares Shadowing sensitivity analysis of chaotic limit cycle oscillations , volume=

Reference 68

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation 744bbe87-74c0-415b-a658-0be135bd3600 · outbound

This paper cites On extending the limits of variational assimilation in nonlinear chaotic systems , volume =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity On extending the limits of variational assimilation in nonlinear chaotic systems , volume =

Reference 69

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation 6e250abd-75d0-434f-81be-9cf91cebda05 · outbound

This paper cites diffSPH: Differentiable smoothed particle hydrodynamics for hybrid machine learning solutions in fluid mechanics , journal =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity diffSPH: Differentiable smoothed particle hydrodynamics for hybrid machine learning solutions in fluid mechanics , journal =

Reference 70

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Observation eef471bb-a11d-4acb-a15f-d73886ada5a9 · outbound

This paper cites and Birch, Aaron and Gizon, Laurent and Tromp, Jeroen , year =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Birch, Aaron and Gizon, Laurent and Tromp, Jeroen , year =

Reference 71

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No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation 328391e0-9be4-40fa-87ac-07ca9827ee91 · outbound

This paper cites 2024 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2024 , eprint=

Reference 72

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no resolver link, observed 2026-08-01T15:55:29.969999Z

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source=arxiv_source observed=2026-08-01T15:55:29.969999Z digest=sha256:6feeaeb0227938e14f227b9ebf49a9ea858514c7a9ecda71cde8f509153119e6

Observation 441efada-daff-42d8-9dad-96bb7ef93e25 · outbound

This paper cites Cosmological hydrodynamics with adaptive mesh refinement: A new high resolution code called RAMSES , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Cosmological hydrodynamics with adaptive mesh refinement: A new high resolution code called RAMSES , volume=

Reference 73

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Observation 083b08bd-1201-48c6-9d9e-d3ffaa45d28e · outbound

This paper cites Astrophysical Journal , keywords =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Astrophysical Journal , keywords =

Reference 74

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Observation 6515c4d6-f874-45fa-8e44-db84282fb4b3 · outbound

This paper cites 2021 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2021 , eprint=

Reference 75

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Observation 37c1fbe7-1094-40ce-95ff-2a37ebccda1a · outbound

This paper cites Advances in Neural Information Processing Systems 32 , pages =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Advances in Neural Information Processing Systems 32 , pages =

Reference 76

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Observation e07f3cd1-bf95-4c88-81ad-b7635c31e7a7 · outbound

This paper cites 2024 , note =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2024 , note =

Reference 77

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Observation 2a826f29-2cd2-4cc1-a457-56b21749f7cb · outbound

This paper cites A quantitative comparison of numerical methods for the compressible Euler equations: fifth-order WENO and piecewise-linear Godunov , journal =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity A quantitative comparison of numerical methods for the compressible Euler equations: fifth-order WENO and piecewise-linear Godunov , journal =

Reference 78

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation 79ed43f7-ca07-4d77-a841-77698db84664 · outbound

This paper cites an unresolved cited work.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 79

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Observation 46eccf73-3600-4d2f-8431-05ce0fac6d99 · outbound

This paper cites 2024 , publisher=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2024 , publisher=

Reference 80

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Observation 966e7418-77ab-4132-864c-d830a02cdb52 · outbound

This paper cites Upwind and High-Resolution Methods for Compressible Flow: From Donor Cell to Residual-Distribution Schemes , url =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Upwind and High-Resolution Methods for Compressible Flow: From Donor Cell to Residual-Distribution Schemes , url =

Reference 81

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation 52118ff8-0229-4dd6-8d1e-5430e5161d98 · outbound

This paper cites Parthenon -- a performance portable block-structured adaptive mesh refinement framework.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Parthenon -- a performance portable block-structured adaptive mesh refinement framework

Reference 82

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Observation a99a3651-e251-43e3-ba12-6eec3b5f257d · outbound

This paper cites 2024 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2024 , eprint=

Reference 83

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Observation 9d0790bd-09ca-444f-a9f5-a01af8a72bfb · outbound

This paper cites 2023 , issn =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2023 , issn =

Reference 84

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Observation 1e9484e9-0db8-4b28-ba0d-386f708c7753 · outbound

This paper cites 2024 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2024 , eprint=

Reference 85

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Observation d36edb3a-f828-404a-b7af-4602837fcd0f · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 86

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation f8ad73d8-e132-408f-b53a-3ca29fc2adc4 · outbound

This paper cites ONERA , year = 1982, editor =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity ONERA , year = 1982, editor =

Reference 87

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Source-reported events for the cited work

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Observation 8e332ed9-6fc6-4205-abb0-107165ee393d · outbound

This paper cites Parallel Lagrange--Newton--Krylov--Schur Methods for PDE-Constrained Optimization.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Parallel Lagrange--Newton--Krylov--Schur Methods for PDE-Constrained Optimization

Reference 88

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation 548dbfe4-e63b-4d8b-920b-f8022bf02e6a · outbound

This paper cites and Perdikaris, P.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Perdikaris, P

Reference 89

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Observation 8ea3a10e-f68d-4b47-b252-cc580a7021ca · outbound

This paper cites Proceedings of the Twenty Third International Conference on Artificial Intelligence and Statistics , pages =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Proceedings of the Twenty Third International Conference on Artificial Intelligence and Statistics , pages =

Reference 90

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Observation 88ca9e65-7cb5-425d-9a2a-15c26a258c90 · outbound

This paper cites The Puzzling Success of Overparameterization: Lottery Tickets or Escape Dimensions? , publisher =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity The Puzzling Success of Overparameterization: Lottery Tickets or Escape Dimensions? , publisher =

Reference 91

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation e86dabc8-d37f-4206-a9f7-4c94ae466b16 · outbound

This paper cites Solving inverse problems in physics by optimizing a discrete loss: Fast and accurate learning without neural networks , volume =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Solving inverse problems in physics by optimizing a discrete loss: Fast and accurate learning without neural networks , volume =

Reference 92

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Observation 202b95dd-9a27-4c21-bf7b-f9a3ea2f9d0e · outbound

This paper cites An Introduction to Trajectory Optimization: How to Do Your Own Direct Collocation , volume =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity An Introduction to Trajectory Optimization: How to Do Your Own Direct Collocation , volume =

Reference 93

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Observation 760d4083-93dc-40a8-9d74-d870cb2f05a8 · outbound

This paper cites an unresolved cited work.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 94

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Source-reported events for the cited work

No event found in the named queried sources as of 2026-08-10T06:31:04.303077+00:00.

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Observation 925f829d-13bc-4773-b1e0-a7082820bf6e · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Unresolved cited work

Reference 95

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Observation 4db8ee18-e2ab-4e15-aa71-cc61bd61bf3d · outbound

This paper cites Accounting for an imperfect model in 4D‐Var , volume =.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Accounting for an imperfect model in 4D‐Var , volume =

Reference 96

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Observation cac205a4-1ac2-42fb-9256-230f246343c0 · outbound

This paper cites 2023 , eprint=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2023 , eprint=

Reference 97

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Source-reported events for the cited work

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Observation 2d2ef62b-0856-4e64-9272-20b34b740cfd · outbound

This paper cites and Tiels, Koen and Umenberger, Jack and Sch\".

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Tiels, Koen and Umenberger, Jack and Sch\"

Reference 98

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Source-reported events for the cited work

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Observation eb7f98aa-fd4c-4ba5-8228-a8549d4e1e1b · outbound

This paper cites Multiple Shooting for Training Neural Differential Equations on Time Series , volume=.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity Multiple Shooting for Training Neural Differential Equations on Time Series , volume=

Reference 99

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Observation 992a5b1f-d035-4996-99ee-b266108ce5a2 · outbound

This paper cites and Baake, M.

Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity and Baake, M

Reference 100

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Observation 7759db11-c18f-4b85-84c6-bf257b2e2868 · outbound

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Per Astronomix ad Astra: High-Order Differentiable (Magneto)hydrodynamics with Energy-Conserving Self-Gravity 2025 , eprint=

Reference 101

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Pith citing papers

No inbound Pith citation observations are available.