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Paper Citation Record · LEDGER

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration

As of 7 August 2026, this Paper Citation Record lists 84 of 84 outbound references and 4 inbound Pith citation observations for arXiv:2507.01377.

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

pith.paper-citation-record.v1
2507.01377 v2

Coverage vector

measured 84 of 84 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-06T21:02:36.047055Z

measured 88 of 88 standing notices

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measured 4 of 4 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-03T20:53:24.842800Z

measured 1 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: arxiv_reference, observed 2026-08-05T02:28:24.338817Z

Reference resolution

84 of 84 outbound references displayed

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External citation measurements

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arxiv_reference, observed 2026-08-05T02:28:24.338817Z

Outbound references

Observation 1670b8e8-f23f-4cfe-a18b-6124cedb3806 · outbound

This paper cites The cosmological parameter space consists of five flatΛCDM pa- rameters:[Ω 𝑚,Ω𝑐ℎ2,Ω𝑏ℎ2,𝑛𝑠,log(10 10𝐴𝑠)].

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The cosmological parameter space consists of five flatΛCDM pa- rameters:[Ω 𝑚,Ω𝑐ℎ2,Ω𝑏ℎ2,𝑛𝑠,log(10 10𝐴𝑠)]

Reference 1

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Observation 3bf88a46-7f77-42da-ae6a-6a50b9c5197b · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Unresolved cited work

Reference 2

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Observation 7795f032-bc2d-4ba4-b186-22294846c705 · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration no photo-𝑧uncertainty

Reference 3

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Observation 9bb78ca2-ba8b-4ad8-92d0-f0ae9969bdc9 · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Unresolved cited work

Reference 4

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Observation a5fc98eb-4b4f-46bb-8bb1-56e40859b808 · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Unresolved cited work

Reference 5

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Observation 5f0ca038-4ac7-4f5f-8cbd-76c7d1ef5a28 · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Unresolved cited work

Reference 6

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Observation 91e930c0-fc27-4361-ba36-37e072040de1 · outbound

This paper cites Aghanim, Y.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Aghanim, Y

Reference 7

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Observation 58e946a5-6b92-40e9-bf9c-72b1397daf17 · outbound

This paper cites Status of the LambdaCDM theory: supporting evidence and anomalies.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Status of the LambdaCDM theory: supporting evidence and anomalies

Reference 8

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Observation 99030594-9204-4b1c-a0d4-ab5136417dbc · outbound

This paper cites Dark Energy Survey Year 3 Results: Cosmological Constraints from Galaxy Clustering and Weak Lensing.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dark Energy Survey Year 3 Results: Cosmological Constraints from Galaxy Clustering and Weak Lensing

Reference 9

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Observation 413daf0e-6e2b-45c2-9578-72ff9d0ec0ee · outbound

This paper cites Hyper Suprime-Cam Year 3 Results: Cosmology from Galaxy Clustering and Weak Lensing with HSC and SDSS using the Minimal Bias Model.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Hyper Suprime-Cam Year 3 Results: Cosmology from Galaxy Clustering and Weak Lensing with HSC and SDSS using the Minimal Bias Model

Reference 10

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Observation 78cd7f06-74b8-402e-a5c8-00f1a8502e62 · outbound

This paper cites KiDS-Legacy: Cosmological constraints from cosmic shear with the complete Kilo-Degree Survey.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration KiDS-Legacy: Cosmological constraints from cosmic shear with the complete Kilo-Degree Survey

Reference 11

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Observation c002fa34-8968-4e10-ac8a-61878d9fa1c8 · outbound

This paper cites Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Large Magellanic Cloud Cepheid Standards Provide a 1% Foundation for the Determination of the Hubble Constant and Stronger Evidence for Physics Beyond LambdaCDM

Reference 12

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Observation c603d266-6014-4fa9-a10a-bdf9258a5500 · outbound

This paper cites The Complete Light-curve Sample of Spectroscopically Confirmed Type Ia Supernovae from Pan-STARRS1 and Cosmological Constraints from The Combined Pantheon Sample.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Complete Light-curve Sample of Spectroscopically Confirmed Type Ia Supernovae from Pan-STARRS1 and Cosmological Constraints from The Combined Pantheon Sample

Reference 13

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Observation e137957b-aeb9-41c5-84bd-88d5ded5c5d2 · outbound

This paper cites Cosmological inference from the emulator based halo model II: Joint analysis of galaxy-galaxy weak lensing and galaxy clustering from HSC-Y1 and SDSS.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Cosmological inference from the emulator based halo model II: Joint analysis of galaxy-galaxy weak lensing and galaxy clustering from HSC-Y1 and SDSS

Reference 14

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Observation e3b80231-91a3-4f0e-9972-4d5712d2b568 · outbound

This paper cites Cosmology Intertwined III: $f \sigma_8$ and $S_8$.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Cosmology Intertwined III: $f \sigma_8$ and $S_8$

Reference 16

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Observation 38a49631-d4f9-4625-ae69-294df31b38f2 · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dodelson and F

Reference 17

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Observation b060ddbd-3196-4760-a012-2d365fd788b1 · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Cooray and R

Reference 18

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Observation 3aa87e22-956f-4448-81c9-010c2da8e76d · outbound

This paper cites DESI 2024 V: Full-Shape Galaxy Clustering from Galaxies and Quasars.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration DESI 2024 V: Full-Shape Galaxy Clustering from Galaxies and Quasars

Reference 19

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Observation 2eac95dc-d857-40f2-9a68-acfe55353acc · outbound

This paper cites Dark Energy Survey Year 3 Results: Galaxy clustering and systematics treatment for lens galaxy samples.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dark Energy Survey Year 3 Results: Galaxy clustering and systematics treatment for lens galaxy samples

Reference 20

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Observation 2874d9b0-93cc-4143-b625-19d6b808f7b5 · outbound

This paper cites Hyper Suprime-Cam Year 3 Results: Measurements of Clustering of SDSS-BOSS Galaxies, Galaxy-Galaxy Lensing and Cosmic Shear.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Hyper Suprime-Cam Year 3 Results: Measurements of Clustering of SDSS-BOSS Galaxies, Galaxy-Galaxy Lensing and Cosmic Shear

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Observation 9b68cb14-1946-408e-a4f6-073a619334a3 · outbound

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Hyper Suprime-Cam SSP Survey: Overview and Survey Design

Reference 22

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Miyazaki, Y

Reference 23

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The three-year shear catalog of the Subaru Hyper Suprime-Cam SSP Survey

Reference 24

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This paper cites The Eleventh and Twelfth Data Releases of the Sloan Digital Sky Survey: Final Data from SDSS-III.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Eleventh and Twelfth Data Releases of the Sloan Digital Sky Survey: Final Data from SDSS-III

Reference 25

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This paper cites Hyper Suprime-Cam Year 3 Results: Cosmology from Cosmic Shear Two-point Correlation Functions.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Hyper Suprime-Cam Year 3 Results: Cosmology from Cosmic Shear Two-point Correlation Functions

Reference 26

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This paper cites Hyper Suprime-Cam Year 3 Results: Cosmology from Cosmic Shear Power Spectra.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Hyper Suprime-Cam Year 3 Results: Cosmology from Cosmic Shear Power Spectra

Reference 27

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration HSC Year 1 cosmology results with the minimal bias method: HSC$\times$BOSS galaxy-galaxy weak lensing and BOSS galaxy clustering

Reference 28

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This paper cites Hyper Suprime-Cam Year 3 Results: Cosmology from Galaxy Clustering and Weak Lensing with HSC and SDSS using the Emulator Based Halo Model.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Hyper Suprime-Cam Year 3 Results: Cosmology from Galaxy Clustering and Weak Lensing with HSC and SDSS using the Emulator Based Halo Model

Reference 29

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This paper cites Combining cluster observables and stacked weak lensing to probe dark energy: Self-calibration of systematic uncertainties.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Combining cluster observables and stacked weak lensing to probe dark energy: Self-calibration of systematic uncertainties

Reference 30

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Observation ec3e9bc1-3825-4d72-a71d-eb245c934cbf · outbound

This paper cites Weak Lensing Tomographic Redshift Distribution Inference for the Hyper Suprime-Cam Subaru Strategic Program three-year shape catalogue.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Weak Lensing Tomographic Redshift Distribution Inference for the Hyper Suprime-Cam Subaru Strategic Program three-year shape catalogue

Reference 31

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Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dark Energy Survey Year 1 Results: Galaxy-Galaxy Lensing

Reference 32

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Observation fbd14ac3-cde3-48b7-98e2-70f8e5b61b68 · outbound

This paper cites An algorithm for the direct reconstruction of the dark matter correlation function from weak lensing and galaxy clustering.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration An algorithm for the direct reconstruction of the dark matter correlation function from weak lensing and galaxy clustering

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Observation 2a4821e8-b2d5-4191-af66-8bdea316f2ec · outbound

This paper cites Cosmological parameter constraints from galaxy-galaxy lensing and galaxy clustering with the SDSS DR7.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Cosmological parameter constraints from galaxy-galaxy lensing and galaxy clustering with the SDSS DR7

Reference 34

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Observation f6992a4c-4c02-471a-be08-29ef4742d968 · outbound

This paper cites Lupton, S.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Lupton, S

Reference 35

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Observation 569b63bf-2218-4201-8fbd-5ec238693390 · outbound

This paper cites Dark Quest. I. Fast and Accurate Emulation of Halo Clustering Statistics and Its Application to Galaxy Clustering.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dark Quest. I. Fast and Accurate Emulation of Halo Clustering Statistics and Its Application to Galaxy Clustering

Reference 36

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Observation 1c5e9052-c177-429a-a0e9-8baa77a9b634 · outbound

This paper cites The Baryon Oscillation Spectroscopic Survey of SDSS-III.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Baryon Oscillation Spectroscopic Survey of SDSS-III

Reference 37

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Observation 257b9e72-df60-4bac-8854-216cb323eb97 · outbound

This paper cites Validating a minimal galaxy bias method for cosmological parameter inference using HSC-SDSS mock catalogs.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Validating a minimal galaxy bias method for cosmological parameter inference using HSC-SDSS mock catalogs

Reference 38

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Observation a11beb62-7bd6-4e81-9e56-2ac4a622af4c · outbound

This paper cites The Seventh Data Release of the Sloan Digital Sky Survey.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Seventh Data Release of the Sloan Digital Sky Survey

Reference 39

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Observation b1559873-22fd-4f1d-b35a-524657ff2728 · outbound

This paper cites The 2.5 m Telescope of the Sloan Digital Sky Survey.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The 2.5 m Telescope of the Sloan Digital Sky Survey

Reference 40

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Observation 0f868b9b-aac3-4bbe-822f-c1cb54db3ffb · outbound

This paper cites Impact of survey spatial variability on galaxy redshift distributions and the cosmological $3\times2$-point statistics for the Rubin Legacy Survey of Space and Time (LSST).

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Impact of survey spatial variability on galaxy redshift distributions and the cosmological $3\times2$-point statistics for the Rubin Legacy Survey of Space and Time (LSST)

Reference 41

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source=pdf_text observed=2026-08-06T21:02:31.576009Z digest=sha256:32bfc2b4a68de837b2a6a27eef75fccfca3dfb74c4d5973a56f6d59c26489343

Observation 56ea5fcb-ecc6-4582-8a9a-59aebf36587b · outbound

This paper cites GalSim: The modular galaxy image simulation toolkit.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration GalSim: The modular galaxy image simulation toolkit

Reference 42

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Observation 4dab924b-8f1b-4751-891a-f409c2a14ecc · outbound

This paper cites Third Data Release of the Hyper Suprime-Cam Subaru Strategic Program.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Third Data Release of the Hyper Suprime-Cam Subaru Strategic Program

Reference 43

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Observation d17d0315-e6de-4ac7-81e7-aea4afad981f · outbound

This paper cites Second Data Release of the Hyper Suprime-Cam Subaru Strategic Program.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Second Data Release of the Hyper Suprime-Cam Subaru Strategic Program

Reference 44

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Observation 2705c7e0-05f3-4727-a9fe-0478c52bfc5f · outbound

This paper cites Photometric Redshifts for the Hyper Suprime-Cam Subaru Strategic Program Data Release 2.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Photometric Redshifts for the Hyper Suprime-Cam Subaru Strategic Program Data Release 2

Reference 45

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Reference 46

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Observation 0c4fec03-8376-4cb7-a1af-34306fa2c799 · outbound

This paper cites Shear calibration biases in weak lensing surveys.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Shear calibration biases in weak lensing surveys

Reference 47

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Observation 25ee1a28-6245-4b8c-8a47-b96110d51b3b · outbound

This paper cites Mandelbaum, C.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Mandelbaum, C

Reference 48

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source=pdf_text observed=2026-08-06T21:02:32.047257Z digest=sha256:aae06bcd1666e5e61c445d3b0b1f64ca88455269fc66ebd891db603f43f5a878

Observation 89ef1cbe-5673-4aab-87c5-b183f7af2e7e · outbound

This paper cites A Universal Density Profile from Hierarchical Clustering.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration A Universal Density Profile from Hierarchical Clustering

Reference 49

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source=pdf_text observed=2026-08-06T21:02:32.783275Z digest=sha256:5b455bae9996bccec1118cb1a7bcd1015592a5b4e72d0f8025592b2a6adee13b

Observation 0da09d7e-690a-45b0-8e11-7e776293e573 · outbound

This paper cites A cluster finding algorithm based on the multiband identification of red sequence galaxies.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration A cluster finding algorithm based on the multiband identification of red sequence galaxies

Reference 50

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Observation c6ef82d7-9e8f-4cf0-81c4-33b7ac0400dc · outbound

This paper cites Two- and three-dimensional wide-field weak lensing mass maps from the Hyper Suprime-Cam Subaru Strategic Program S16A data.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Two- and three-dimensional wide-field weak lensing mass maps from the Hyper Suprime-Cam Subaru Strategic Program S16A data

Reference 51

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source=pdf_text observed=2026-08-06T21:02:32.309777Z digest=sha256:5fa0612f774864e3eba38b5b22f191036e500002efe0f4b8f76d8ef1119c3742

Observation 1a73cb31-7d1a-4934-ba79-5be3462c1fc8 · outbound

This paper cites Galaxy-galaxy lensing estimators and their covariance properties.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Galaxy-galaxy lensing estimators and their covariance properties

Reference 52

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Observation ffdaaf02-c006-4a27-a08e-77b8a0a5c5a8 · outbound

This paper cites Full-sky Gravitational Lensing Simulation for Large-area Galaxy Surveys and Cosmic Microwave Background Experiments.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Full-sky Gravitational Lensing Simulation for Large-area Galaxy Surveys and Cosmic Microwave Background Experiments

Reference 53

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Observation e1ce3b80-7ad1-499e-b8a1-6e4c2f7ec7a8 · outbound

This paper cites Hinshaw, D.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Hinshaw, D

Reference 54

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Observation b95316d5-d568-42c0-a5f6-3b12b8895292 · outbound

This paper cites Mock galaxy shape catalogs in the Subaru Hyper Suprime-Cam Survey.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Mock galaxy shape catalogs in the Subaru Hyper Suprime-Cam Survey

Reference 55

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Observation 164b4c38-b926-486d-ae0e-fcda2683cfa6 · outbound

This paper cites Cross-correlation Weak Lensing of SDSS Galaxy Clusters I: Measurements.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Cross-correlation Weak Lensing of SDSS Galaxy Clusters I: Measurements

Reference 56

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Observation 62a7adba-339c-4889-bd43-5fb110d2bf25 · outbound

This paper cites The Rockstar Phase-Space Temporal Halo Finder and the Velocity Offsets of Cluster Cores.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Rockstar Phase-Space Temporal Halo Finder and the Velocity Offsets of Cluster Cores

Reference 57

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Observation 03eef9cc-29b5-4409-ab80-6fb7591b6f73 · outbound

This paper cites Zehavi, Z.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Zehavi, Z

Reference 58

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Observation 74ab5bc6-8de8-4a20-b12a-1f81e603c84a · outbound

This paper cites The Weak Lensing Signal and the Clustering of BOSS Galaxies II: Astrophysical and Cosmological Constraints.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Weak Lensing Signal and the Clustering of BOSS Galaxies II: Astrophysical and Cosmological Constraints

Reference 59

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Reference 60

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Observation da0fde36-0615-4bb4-8873-6fde181b0a12 · outbound

This paper cites The Galaxy-mass Correlation Function Measured from Weak Lensing in the SDSS.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Galaxy-mass Correlation Function Measured from Weak Lensing in the SDSS

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Observation 67e7d242-d947-42a8-871e-27ce49c7b03d · outbound

This paper cites Weak Lensing Results from the 75 Square Degree CTIO Survey.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Weak Lensing Results from the 75 Square Degree CTIO Survey

Reference 62

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Observation 19d2ae36-679b-49f6-b019-0f41c9fc821b · outbound

This paper cites Cosmological Constraints from a Combination of Galaxy Clustering and Lensing -- I. Theoretical Framework.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Cosmological Constraints from a Combination of Galaxy Clustering and Lensing -- I. Theoretical Framework

Reference 63

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Observation 3f23d984-33c6-4a2f-9057-48e884822a68 · outbound

This paper cites The Weak Lensing Signal and the Clustering of BOSS Galaxies I: Measurements.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration The Weak Lensing Signal and the Clustering of BOSS Galaxies I: Measurements

Reference 64

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source=pdf_text observed=2026-08-06T21:02:33.557535Z digest=sha256:fd3e7702ead9a7855da8bd840d4bd67c4a812ef2773a310f214bc181f399533f

Observation d4e3f7ae-db8f-46d1-9d32-3984bdc3c0b2 · outbound

This paper cites Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements

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source=pdf_text observed=2026-08-06T21:02:33.645073Z digest=sha256:f0c97374c6f3f700dd1102b9f6d9af9509b976e1255780227cb5b607a1b6e51c

Observation 329d052f-73f5-40c2-ae58-f02c6f213e39 · outbound

This paper cites CFHTLenS tomographic weak lensing cosmological parameter constraints: Mitigating the impact of intrinsic galaxy alignments.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration CFHTLenS tomographic weak lensing cosmological parameter constraints: Mitigating the impact of intrinsic galaxy alignments

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source=pdf_text observed=2026-08-06T21:02:33.739074Z digest=sha256:e62823252435ac22a95c90a92ca59aae9d7c9be4ea3150be88935a4a172f4863

Observation fcd7ab35-d550-42c7-92d9-e4012b8259a4 · outbound

This paper cites Efficient Computation of CMB anisotropies in closed FRW models.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Efficient Computation of CMB anisotropies in closed FRW models

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Observation 5a54acee-4942-455e-bd50-0cfd8e2e467f · outbound

This paper cites Revising the Halofit Model for the Nonlinear Matter Power Spectrum.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Revising the Halofit Model for the Nonlinear Matter Power Spectrum

Reference 68

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Observation fb13aea6-5a76-4075-8768-d278c0efd174 · outbound

This paper cites Modeling baryonic physics in future weak lensing surveys.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Modeling baryonic physics in future weak lensing surveys

Reference 69

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Observation 1954ce2b-5460-462f-80c2-8766a591c412 · outbound

This paper cites Robust sampling for weak lensing and clustering analyses with the Dark Energy Survey.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Robust sampling for weak lensing and clustering analyses with the Dark Energy Survey

Reference 70

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Observation 1706e2e9-6ca2-46ce-813e-8fe158b2c18c · outbound

This paper cites Dark Energy Survey Year 3 Results: High-precision measurement and modeling of galaxy-galaxy lensing.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dark Energy Survey Year 3 Results: High-precision measurement and modeling of galaxy-galaxy lensing

Reference 71

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Observation d257702f-d006-446b-9dcd-d9baf4bb39be · outbound

This paper cites Intrinsic alignment-lensing interference as a contaminant of cosmic shear.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Intrinsic alignment-lensing interference as a contaminant of cosmic shear

Reference 73

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Observation 39ab77f1-8213-40b8-8c7a-b08a3cefeada · outbound

This paper cites Intrinsic alignments of SDSS-III BOSS LOWZ sample galaxies.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Intrinsic alignments of SDSS-III BOSS LOWZ sample galaxies

Reference 74

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Observation a9f4ce5e-e53e-4875-a7bb-9fad39640f1a · outbound

This paper cites Dark Energy Survey Year 3 Results: Cosmology from galaxy clustering and galaxy-galaxy lensing in harmonic space.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Dark Energy Survey Year 3 Results: Cosmology from galaxy clustering and galaxy-galaxy lensing in harmonic space

Reference 75

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Observation 047ed741-6020-4838-84b2-b4563acab862 · outbound

This paper cites Photometric Redshift Uncertainties in Weak Gravitational Lensing Shear Analysis: Models and Marginalization.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Photometric Redshift Uncertainties in Weak Gravitational Lensing Shear Analysis: Models and Marginalization

Reference 76

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Observation 6f33b379-93de-4d24-a143-9fc6dc39be3f · outbound

This paper cites an unresolved cited work.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Unresolved cited work

Reference 77

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Reference 78

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Observation d421d4f0-41da-40df-ac68-c4249c625ecf · outbound

This paper cites Why your model parameter confidences might be too optimistic -- unbiased estimation of the inverse covariance matrix.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Why your model parameter confidences might be too optimistic -- unbiased estimation of the inverse covariance matrix

Reference 79

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Observation 01f4dfc5-1d35-4706-8c98-faa05258d82e · outbound

This paper cites CosmoSIS: modular cosmological parameter estimation.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration CosmoSIS: modular cosmological parameter estimation

Reference 80

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Observation 7af30726-950d-48aa-acd1-fbde08a5649e · outbound

This paper cites Cosmological inference from emulator based halo model I: Validation tests with HSC and SDSS mock catalogs.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Cosmological inference from emulator based halo model I: Validation tests with HSC and SDSS mock catalogs

Reference 81

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Reference 82

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Observation d33a34b2-5dc5-4cc0-b8bb-b697efb81ead · outbound

This paper cites Weak lensing power spectra for precision cosmology: Multiple-deflection, reduced shear and lensing bias corrections.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Weak lensing power spectra for precision cosmology: Multiple-deflection, reduced shear and lensing bias corrections

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Observation 6ff516a6-5934-47b1-a8f5-a9d088623a01 · outbound

This paper cites Zhang and X.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Zhang and X

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Observation bccd9b1b-ac15-43d2-849a-9ab80f618211 · outbound

This paper cites Massive Lossless Data Compression and Multiple Parameter Estimation from Galaxy Spectra.

Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration Massive Lossless Data Compression and Multiple Parameter Estimation from Galaxy Spectra

Reference 85

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Pith citing papers

Observation 884d0ee1-2e9a-4b12-a4ee-f7fa12996709 · inbound

Cosmic Shear constraints from HSC Year 3 with clustering calibration of the tomographic redshift distributions from DESI cites this paper.

Cosmic Shear constraints from HSC Year 3 with clustering calibration of the tomographic redshift distributions from DESI Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration

Reference 28

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Observation 64c2ef86-6f54-4a9f-88d2-ba7de577d9a7 · inbound

Cosmic Shear constraints from HSC Year 3 with clustering calibration of the tomographic redshift distributions from DESI cites this paper.

Cosmic Shear constraints from HSC Year 3 with clustering calibration of the tomographic redshift distributions from DESI Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration

Reference 28

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Observation 1e7ec497-71ab-4cf4-94d4-2364601217a3 · inbound

$4\times3$ Point Correlation Functions in Galaxy Surveys: Impact of Baryonic Feedback cites this paper.

$4\times3$ Point Correlation Functions in Galaxy Surveys: Impact of Baryonic Feedback Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration

Reference 11

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Observation dcc25253-1b2f-4099-a210-f68f452255e8 · inbound

Revisiting the 'Lensing is Low' Problem with UNIONS cites this paper.

Revisiting the 'Lensing is Low' Problem with UNIONS Modelling Galaxy Clustering and Tomographic Galaxy-Galaxy Lensing with HSC Y3 and SDSS using the Point-Mass Correction Model and Redshift Self-Calibration

Reference 44

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