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Paper Citation Record · LEDGER

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach

As of 12 August 2026, this Paper Citation Record lists 47 of 47 outbound references and 1 inbound Pith citation observation for arXiv:2412.14704.

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

pith.paper-citation-record.v1
2412.14704 v2

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measured 47 of 47 reference resolution

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Pith citing papers itemized under the disclosed page cap.

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Source: cited_works

Reference resolution

47 of 47 outbound references displayed

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Outbound references

Observation 27ee4586-e9bb-4291-aff4-100faf758a3e · outbound

This paper cites Planck 2018 results. VI. Cosmological parameters.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Planck 2018 results. VI. Cosmological parameters

Reference 1

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Observation 692c4200-df40-42de-8874-8ef6265233e0 · outbound

This paper cites Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies

Reference 2

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Observation 1618314c-6292-4d44-9636-8bc537a87003 · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

Reference 3

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Observation a645861a-7954-4e44-a3da-5b275344aa58 · outbound

This paper cites Bartelmann and P.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Bartelmann and P

Reference 4

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Observation 6f69155a-5407-4c57-acbe-7e5866b35498 · outbound

This paper cites Euclid Definition Study Report.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Euclid Definition Study Report

Reference 5

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Observation fc6dd555-f3d0-4171-843c-ca5dd6c30b6d · outbound

This paper cites LSST Science Book, Version 2.0.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach LSST Science Book, Version 2.0

Reference 6

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Observation 3a819925-6d57-4623-bc73-8b03f44a4923 · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

Reference 7

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Observation b6bc3138-d359-4071-a5bf-e20c0fc648cf · outbound

This paper cites Mapping luminous and dark matter in the Universe.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Mapping luminous and dark matter in the Universe

Reference 8

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Observation edbf0914-b936-4278-925b-bdc26e465659 · outbound

This paper cites Snowmass2021 Cosmic Frontier White Paper: Dark Matter Physics from Halo Measurements.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Snowmass2021 Cosmic Frontier White Paper: Dark Matter Physics from Halo Measurements

Reference 9

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Observation c238f4ca-c769-495f-b514-2772d10541e6 · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

Reference 10

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Observation f51a532d-a28e-4378-a72d-4890bd8124f7 · outbound

This paper cites Probing the Universe with Weak Lensing.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Probing the Universe with Weak Lensing

Reference 11

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Observation 0acce995-c11e-4a02-9551-4ffe65455903 · outbound

This paper cites Power Spectrum Tomography with Weak Lensing.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Power Spectrum Tomography with Weak Lensing

Reference 12

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This paper cites For this reason, we chose to focus exclusively on the angular power spectrum.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach For this reason, we chose to focus exclusively on the angular power spectrum

Reference 13

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Observation 3f506f26-4a42-4126-beac-20e1e4527259 · outbound

This paper cites Kaiser and G.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Kaiser and G

Reference 14

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Observation 7d1a6b63-0fbb-4a4e-bc1d-a2ac1dfe130e · 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.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Hyper Suprime-Cam Year 3 Results: Cosmology from Galaxy Clustering and Weak Lensing with HSC and SDSS using the Minimal Bias Model

Reference 15

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Observation 3de4a1ed-f301-4140-9aff-fb60eadbc6fd · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Hyper Suprime-Cam Year 3 Results: Cosmology from Cosmic Shear Power Spectra

Reference 16

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Observation f4ea8180-cf72-4414-b696-d30e2689859f · outbound

This paper cites KiDS-1000 Cosmology: Cosmic shear constraints and comparison between two point statistics.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach KiDS-1000 Cosmology: Cosmic shear constraints and comparison between two point statistics

Reference 17

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Observation cee7ff55-52ce-4bc4-9209-b4bffd771586 · outbound

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

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Dark Energy Survey Year 3 Results: Cosmological Constraints from Galaxy Clustering and Weak Lensing

Reference 18

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This paper cites x-cut Cosmic Shear: Optimally Removing Sensitivity to Baryonic and Nonlinear Physics with an Application to the Dark Energy Survey Year 1 Shear Data.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach x-cut Cosmic Shear: Optimally Removing Sensitivity to Baryonic and Nonlinear Physics with an Application to the Dark Energy Survey Year 1 Shear Data

Reference 19

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This paper cites 23) truncated by the boolean filter V(kcut, TFD) (resp.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach 23) truncated by the boolean filter V(kcut, TFD) (resp

Reference 20

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Observation 138a6e1f-b87b-4051-afb0-333e2ea1b96a · outbound

This paper cites Cosmic shear full nulling: sorting out dynamics, geometry and systematics.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Cosmic shear full nulling: sorting out dynamics, geometry and systematics

Reference 21

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This paper cites k-cut Cosmic Shear: Tunable Power Spectrum Sensitivity to Test Gravity.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach k-cut Cosmic Shear: Tunable Power Spectrum Sensitivity to Test Gravity

Reference 22

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This paper cites Euclid preparation: VII. Forecast validation for Euclid cosmological probes.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Euclid preparation: VII. Forecast validation for Euclid cosmological probes

Reference 23

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Observation e7193a76-e0e6-4dd1-af8a-19971861a484 · outbound

This paper cites Nulling Tomography with Weak Gravitational Lensing.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Nulling Tomography with Weak Gravitational Lensing

Reference 24

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This paper cites The removal of shear-ellipticity correlations from the cosmic shear signal via nulling techniques.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach The removal of shear-ellipticity correlations from the cosmic shear signal via nulling techniques

Reference 25

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Cosmic shear nulling as a geometrical cosmological probe: Methodology and sensitivity to cosmological parameters and systematics

Reference 27

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

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This paper cites Figure 3 shows that the parameter AB [24] can specifically bias the power spectrum for k >1 Mpc−1, potentially resulting in a bi- ased S8 if left uncorrected.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Figure 3 shows that the parameter AB [24] can specifically bias the power spectrum for k >1 Mpc−1, potentially resulting in a bi- ased S8 if left uncorrected

Reference 29

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This paper cites Accurate halo-model matter power spectra with dark energy, massive neutrinos and modified gravitational forces.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Accurate halo-model matter power spectra with dark energy, massive neutrinos and modified gravitational forces

Reference 30

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Observation 6f5b9888-bdf6-4baa-9ae6-e8a5fafdd5f2 · outbound

This paper cites Novel geometrical test of cosmological expansion from photometric data.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Novel geometrical test of cosmological expansion from photometric data

Reference 31

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This paper cites Baryonic feedback measurement from KV450 cosmic shear analysis.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Baryonic feedback measurement from KV450 cosmic shear analysis

Reference 32

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Observation 37fdfa77-76aa-43f0-b415-986d43e4da12 · outbound

This paper cites On constraining Cosmology and the Halo Mass Function with Weak Gravitational Lensing.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach On constraining Cosmology and the Halo Mass Function with Weak Gravitational Lensing

Reference 33

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Observation c8db29a7-350b-45be-ab83-99467878cee3 · outbound

This paper cites Robust cosmic shear with small-scale nulling.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Robust cosmic shear with small-scale nulling

Reference 34

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Observation 25d80ee2-d733-484d-9376-81a293afba8e · outbound

This paper cites A non-linear solution to the $S_8$ tension?.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach A non-linear solution to the $S_8$ tension?

Reference 35

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This paper cites KiDS-1000 Cosmology: Multi-probe weak gravitational lensing and spectroscopic galaxy clustering constraints.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach KiDS-1000 Cosmology: Multi-probe weak gravitational lensing and spectroscopic galaxy clustering constraints

Reference 36

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Observation fbf13fd4-cd28-4e93-9653-4795a1d5325c · outbound

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

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Revising the Halofit Model for the Nonlinear Matter Power Spectrum

Reference 37

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Observation 9442c0d5-b98e-440e-ab6b-7a6049cee6b8 · outbound

This paper cites A new method to quantify the effects of baryons on the matter power spectrum.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach A new method to quantify the effects of baryons on the matter power spectrum

Reference 38

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Observation a01b4d4a-0cff-4867-ae29-f82793d7c3da · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Quantifying baryon effects on the matter power spectrum and the weak lensing shear correlation

Reference 39

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

Reference 40

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Observation f15fdd2a-7197-4dcc-8f4e-68cbcc440254 · outbound

This paper cites Core Cosmology Library: Precision Cosmological Predictions for LSST.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Core Cosmology Library: Precision Cosmological Predictions for LSST

Reference 41

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Observation 9521e53a-6c92-4df0-bc79-84c23b24a6b1 · outbound

This paper cites The LSST Dark Energy Science Collaboration (DESC) Science Requirements Document.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach The LSST Dark Energy Science Collaboration (DESC) Science Requirements Document

Reference 42

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Observation 31f4986b-08ff-47ad-8348-9590189e47c1 · outbound

This paper cites Reischke, S.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Reischke, S

Reference 43

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Observation 5d91db09-6b95-4774-9392-f37cf0dc964e · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

Reference 44

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Observation dd3aba2e-1846-49ce-883b-de6efadc3eda · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach GetDist: a Python package for analysing Monte Carlo samples

Reference 45

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Observation e2d02f1f-ca82-4b54-a5cb-3768e816c6ac · outbound

This paper cites A New Probe of the High-z BAO scale: BAO tomography With CMB $\times$ LIM-Nulling Convergence.

Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach A New Probe of the High-z BAO scale: BAO tomography With CMB $\times$ LIM-Nulling Convergence

Reference 46

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Observation 9fc7829e-f7fc-4f0c-8493-31b605bc13d2 · outbound

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Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach Unresolved cited work

Reference 47

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Pith citing papers

Observation e9f628c2-58a5-4afa-a285-10b52ca96a12 · inbound

KiDS-Legacy: The consistency test of the large-scale structure with Bernardeau-Nishimichi-Taruya transform cites this paper.

KiDS-Legacy: The consistency test of the large-scale structure with Bernardeau-Nishimichi-Taruya transform Mitigating Nonlinear Systematics in Weak Lensing Surveys: The Bernardeau-Nishimichi-Taruya Approach

Reference 49

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