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Paper Citation Record · LEDGER

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models

As of 12 August 2026, this Paper Citation Record lists 100 of 287 outbound references and 0 inbound Pith citation observations for arXiv:2607.24939.

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

pith.paper-citation-record.v1
2607.24939 v1

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measured 100 of 287 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 287 outbound references displayed

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Outbound references

Observation 7fe018ca-16ed-45c7-9832-4efb80aab62d · outbound

This paper cites N-body simulations with generic non-Gaussian initial conditions I: Power Spectrum and halo mass function.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models N-body simulations with generic non-Gaussian initial conditions I: Power Spectrum and halo mass function

Reference 1

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Observation 8020b90b-c9de-47dd-9cec-7f7f62207e4b · outbound

This paper cites The overdensity and masses of the friends-of-friends halos and universality of the halo mass function.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The overdensity and masses of the friends-of-friends halos and universality of the halo mass function

Reference 2

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Observation add57e0d-44a7-4276-b814-05359d1c23f4 · outbound

This paper cites Analyzing and Visualizing Cosmological Simulations with ParaView.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Analyzing and Visualizing Cosmological Simulations with ParaView

Reference 3

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Observation 6f22f4c9-79ad-4e4e-8118-ad7d6bd718b0 · outbound

This paper cites Signatures of Supersymmetry from the Early Universe.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Signatures of Supersymmetry from the Early Universe

Reference 4

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Observation 1c9373ef-6682-488a-ae82-22418f83b5d1 · outbound

This paper cites Non-Gaussianity as a Particle Detector.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Non-Gaussianity as a Particle Detector

Reference 5

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Observation c59ab459-eaee-48e6-bde0-bff1e43a6f5a · outbound

This paper cites The Cosmological Bootstrap: Inflationary Correlators from Symmetries and Singularities.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The Cosmological Bootstrap: Inflationary Correlators from Symmetries and Singularities

Reference 6

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Observation e8dbcc12-4575-4ab0-8498-b4cc712351d8 · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 7

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Observation 935c7606-62a1-469a-b331-8f0a690b2594 · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 8

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Observation 74c34388-5679-4c7a-a456-66b8aa09e418 · outbound

This paper cites arXiv e-prints , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models arXiv e-prints , keywords =

Reference 9

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Observation afdea8d4-6a5a-42d0-8eec-e905fc621f5e · outbound

This paper cites The Three Causes of Low-Mass Assembly Bias.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The Three Causes of Low-Mass Assembly Bias

Reference 10

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Observation 41dfd109-bbb3-4e39-ac35-a9664d23c7b1 · outbound

This paper cites arXiv e-prints , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models arXiv e-prints , keywords =

Reference 11

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Observation 09693d99-c0a8-4409-8f2c-7e80d91e485a · outbound

This paper cites A New Algorithm for Computing Statistics of Weak Lensing by Large-Scale Structure.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models A New Algorithm for Computing Statistics of Weak Lensing by Large-Scale Structure

Reference 13

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Observation 0ebdf1ee-c064-436c-b9aa-229e9b794869 · outbound

This paper cites Dark Energy Survey Year 1 Results: Curved-Sky Weak Lensing Mass Map.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 1 Results: Curved-Sky Weak Lensing Mass Map

Reference 14

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Observation 1a6b6252-3c50-4215-83d3-c8d9d432140b · outbound

This paper cites Modeling Nearest Neighbor distributions of biased tracers using Hybrid Effective Field Theory.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Modeling Nearest Neighbor distributions of biased tracers using Hybrid Effective Field Theory

Reference 15

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Observation 0464a3ef-8e9f-43f5-83e2-963ac0fb1fff · outbound

This paper cites Cosmological cross-correlations and nearest neighbor distributions.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Cosmological cross-correlations and nearest neighbor distributions

Reference 16

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Observation 775ed9cd-6212-418f-b96e-df1ebcffa30b · outbound

This paper cites Nearest Neighbor distributions: new statistical measures for cosmological clustering.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Nearest Neighbor distributions: new statistical measures for cosmological clustering

Reference 17

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Observation af8578c4-991d-4dc0-ae82-290eef19a9f2 · outbound

This paper cites Detection of spatial clustering in the 1000 richest SDSS DR8 redMaPPer clusters with Nearest Neighbor distributions.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Detection of spatial clustering in the 1000 richest SDSS DR8 redMaPPer clusters with Nearest Neighbor distributions

Reference 18

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Observation 117b1343-aa75-42b4-847d-1c2c1b47847a · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 19

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Observation 9019738a-2b7d-4fee-bd8e-2b99b6509d4c · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 20

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Observation 3b27982f-370d-4b74-ac10-878d907df382 · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Tracer-Field Cross-Correlations with $k$-Nearest Neighbor Distributions

Reference 21

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Observation f1421bd6-13c0-4bc9-91e1-50469c614de4 · outbound

This paper cites Dark Energy Survey Year 3 results: cosmology with moments of weak lensing mass maps.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 results: cosmology with moments of weak lensing mass maps

Reference 22

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 23

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Observation c9d684ea-0161-4869-8d12-560fa9ca5bce · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Agora: Multi-Component Simulation for Cross-Survey Science

Reference 24

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Observation 57035cf0-d421-450f-904e-0e9eb5bce0fd · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Combined analysis of the integrated Sachs-Wolfe effect and cosmological implications

Reference 25

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Beyond the 3rd moment: A practical study of using lensing convergence CDFs for cosmology with DES Y3

Reference 26

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Line-of-sight structure of troughs identified in Subaru Hyper Suprime-Cam Year 3 weak lensing mass maps

Reference 27

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The IA Guide: A Breakdown of Intrinsic Alignment Formalisms

Reference 28

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The Intrinsic Alignment of Galaxies and its Impact on Weak Gravitational Lensing in an Era of Precision Cosmology

Reference 29

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Two- and three-dimensional wide-field weak lensing mass maps from the Hyper Suprime-Cam Subaru Strategic Program S16A data

Reference 30

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The DESI Experiment Part I: Science,Targeting, and Survey Design

Reference 31

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 32

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models CosmoGridV1: a simulated $w$CDM theory prediction for map-level cosmological inference

Reference 33

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Effects of Baryonic Feedback on the Cosmic Web

Reference 36

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models PKDGRAV3: Beyond Trillion Particle Cosmological Simulations for the Next Era of Galaxy Surveys

Reference 37

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Density split statistics: Cosmological constraints from counts and lensing in cells in DES Y1 and SDSS data

Reference 38

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source=arxiv_source observed=2026-07-31T05:29:29.804901Z digest=sha256:15963fb0615bedf7bdee2ab4930fb15e00cd58ae94eab80ca46baea3d8cee90a

Observation 11b09cb1-63de-4dd0-826d-8a5d0094238d · outbound

This paper cites Density split statistics: joint model of counts and lensing in cells.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Density split statistics: joint model of counts and lensing in cells

Reference 39

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source=arxiv_source observed=2026-07-31T05:29:29.807818Z digest=sha256:1a20a167c7d6227403baaa081dc65a5b6b8d9266d1bc48bb9a5a099a5a3b9419

Observation caa73ad9-8b5d-45eb-a42e-825bd252ecc6 · outbound

This paper cites Breaking degeneracies in modified gravity with higher (than 2nd) order weak-lensing statistics.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Breaking degeneracies in modified gravity with higher (than 2nd) order weak-lensing statistics

Reference 40

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source=arxiv_source observed=2026-07-31T05:29:29.810449Z digest=sha256:7ebed2ba5100cdbddefa00057689f5196e3e1c3d3cc381bd321a21876ca4663b

Observation 543742cd-9d23-4fdc-a12c-fd69332c6171 · outbound

This paper cites Emulating the CFHTLenS Weak Lensing data: Cosmological Constraints from moments and Minkowski functionals.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Emulating the CFHTLenS Weak Lensing data: Cosmological Constraints from moments and Minkowski functionals

Reference 41

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source=arxiv_source observed=2026-07-31T05:29:29.813126Z digest=sha256:fb630005de90a49cf4ae30f69df6305a8a43e6f336327baef3b7eb2f2dc7f6b6

Observation 0202aec4-c6e7-418f-a859-6b494041b18b · outbound

This paper cites CFHTLenS: Mapping the Large Scale Structure with Gravitational Lensing.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models CFHTLenS: Mapping the Large Scale Structure with Gravitational Lensing

Reference 42

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source=arxiv_source observed=2026-07-31T05:29:29.815939Z digest=sha256:bda9b3e079f760e1ee33a635c9f7f74ef3ef668e481b56702d7db8b91913e321

Observation 353655a3-5813-4cbb-85ce-929d3a725ebc · outbound

This paper cites Going deep with Minkowski functionals of convergence maps.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Going deep with Minkowski functionals of convergence maps

Reference 43

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source=arxiv_source observed=2026-07-31T05:29:29.819177Z digest=sha256:454485b7bd96839a4514b826ef59632182b9014c00ec11b0f395e42ae1aeac81

Observation 32f8978c-4ee8-43cc-bf7f-3fcf3cd077c2 · outbound

This paper cites A comparison of the evolution of the density field in perturbation theory and numerical simulations - II Counts in cells analysis.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models A comparison of the evolution of the density field in perturbation theory and numerical simulations - II Counts in cells analysis

Reference 44

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source=arxiv_source observed=2026-07-31T05:29:29.822682Z digest=sha256:a29addada90b40cb1834888f3f2fb64167a0f2ed29cb259abd6a20b0b1309565

Observation 29279a6d-7f62-46a9-a80c-362b2ba3bc8a · outbound

This paper cites A Counts-in-Cells Analysis of Lyman-break Galaxies at z~3.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models A Counts-in-Cells Analysis of Lyman-break Galaxies at z~3

Reference 45

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source=arxiv_source observed=2026-07-31T05:29:29.826109Z digest=sha256:11476b07dfdd503552c0ee563fd634d5e8b988517f4afe3c2f04127d5c570ac6

Observation 16fd4214-ca48-46ba-9a58-5bc14b5d0b6d · outbound

This paper cites Planck 2018 results. VII. Isotropy and Statistics of the CMB.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Planck 2018 results. VII. Isotropy and Statistics of the CMB

Reference 46

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source=arxiv_source observed=2026-07-31T05:29:29.829606Z digest=sha256:15fbf38fcd7254a2ae59751c746f4790aadbefb366689ab954f69969a3ec8b9b

Observation 367a8102-cbde-414e-bee3-5e5bbcf0b2b0 · outbound

This paper cites Planck 2015 results. XVI. Isotropy and statistics of the CMB.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Planck 2015 results. XVI. Isotropy and statistics of the CMB

Reference 47

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source=arxiv_source observed=2026-07-31T05:29:29.832894Z digest=sha256:47ab94bc7e619edd02c39778899dff2234802c3efb21a4cc2833f82637093575

Observation 0f1f7e90-09fd-470f-a2d2-e66586a5a501 · outbound

This paper cites Cosmological Forecast for non-Gaussian Statistics in large-scale weak Lensing Surveys.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Cosmological Forecast for non-Gaussian Statistics in large-scale weak Lensing Surveys

Reference 48

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source=arxiv_source observed=2026-07-31T05:29:29.835481Z digest=sha256:09ad4bda01e11986541ce877bb58185afb2512d125ff92eb7c40435bf568e5ca

Observation 251b5c9d-8bfb-4fe3-b8f6-90ba5d9382bf · outbound

This paper cites Dark Energy Survey Year 3 results: Cosmology with peaks using an emulator approach.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 results: Cosmology with peaks using an emulator approach

Reference 49

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source=arxiv_source observed=2026-07-31T05:29:29.837903Z digest=sha256:797d21b240237b4bfd52251b8bbccdcb10cf2548117cf8d9a20c08c760cb9c90

Observation 6c194a9b-e48c-4cd1-9f70-328900a7900e · outbound

This paper cites Dark Energy Survey Year 3 Results: Three-Point Shear Correlations and Mass Aperture Moments.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 Results: Three-Point Shear Correlations and Mass Aperture Moments

Reference 50

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source=arxiv_source observed=2026-07-31T05:29:29.840320Z digest=sha256:7ec0927e88ea163314acaddc78ba31eac1c2cec90923c3ce63ebf5b92db11e73

Observation 24dc1462-be88-4823-8fd8-b0b7ed4b7a6e · outbound

This paper cites Dark Energy Survey Year 3 Results: Weak Lensing Shape Catalogue.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 Results: Weak Lensing Shape Catalogue

Reference 51

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source=arxiv_source observed=2026-07-31T05:29:29.842844Z digest=sha256:7b3790e77f4406575f32a1291a7d77c8cc74a99c23653725ce17d6c0ab089570

Observation 689c4ed5-b139-4a98-ba9e-7c49011bcf11 · outbound

This paper cites Dark Energy Survey Year 3 results: curved-sky weak lensing mass map reconstruction.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 results: curved-sky weak lensing mass map reconstruction

Reference 52

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source=arxiv_source observed=2026-07-31T05:29:29.845475Z digest=sha256:baedef8f7c2a0ac286a7ac87503c1dd9c851ddb7f743793bb08411c949cf08cc

Observation 01693eb4-3400-4b1f-bf6a-b59cec96e305 · outbound

This paper cites Dark Energy Survey Year 3 Results: Point-Spread Function Modeling.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 Results: Point-Spread Function Modeling

Reference 53

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source=arxiv_source observed=2026-07-31T05:29:29.847973Z digest=sha256:a5d1ea976c874b9b0f75873dd5171e20c130aef1a59e9bd48ac1a0ea9ca900af

Observation 98d7017a-9656-4668-ab2b-3c43ced0fc6b · outbound

This paper cites Dark Energy Survey Year 3 Results: Redshift Calibration of the Weak Lensing Source Galaxies.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 Results: Redshift Calibration of the Weak Lensing Source Galaxies

Reference 54

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source=arxiv_source observed=2026-07-31T05:29:29.850536Z digest=sha256:901f11b9f622d965e91ad077e097404b737d0f53b3102f0039342f3c59dd7a4a

Observation 0a3f52d2-450f-4f32-a8e0-e1772c7be691 · outbound

This paper cites Quantification of high dimensional non-Gaussianities and its implication to Fisher analysis in cosmology.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Quantification of high dimensional non-Gaussianities and its implication to Fisher analysis in cosmology

Reference 55

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source=arxiv_source observed=2026-07-31T05:29:29.853167Z digest=sha256:65931fe6381ba8ea5358a0c789e3b66c1c4ae6e7205662f3208d15875d8c28a6

Observation 7be0e423-c2c0-467e-8212-fdacf2204993 · outbound

This paper cites arXiv e-prints , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models arXiv e-prints , keywords =

Reference 56

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arxiv_id, observed 2026-07-31T05:31:06.177279Z

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source=arxiv_source observed=2026-07-31T05:29:29.855817Z digest=sha256:50ed3894908984537037ecdac322b5a13a910e26f0e33c22a1ae1488fc45c096

Observation fb2be1c4-b8e1-4fed-a0e8-28ebd63a246b · outbound

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

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models KiDS-1000 Cosmology: Cosmic shear constraints and comparison between two point statistics

Reference 57

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source=arxiv_source observed=2026-07-31T05:29:29.858291Z digest=sha256:9d17d9fe1a25cf0239429b90f403921c2190cc2868c80e4b5c33b66a60ac33d8

Observation a97188fa-a290-41f6-acf5-0c597cf779cd · outbound

This paper cites A Full $w$CDM Analysis of KiDS-1000 Weak Lensing Maps using Deep Learning.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models A Full $w$CDM Analysis of KiDS-1000 Weak Lensing Maps using Deep Learning

Reference 58

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source=arxiv_source observed=2026-07-31T05:29:29.860861Z digest=sha256:5d95b7cf321582d1834f33f801e51f4dd095234e762b09cd2894aa426299281f

Observation 1a199ebb-b163-480c-913d-d29c188f2b9f · outbound

This paper cites Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Modeling Uncertainty.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Modeling Uncertainty

Reference 59

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source=arxiv_source observed=2026-07-31T05:29:29.863424Z digest=sha256:572cf7ed320f2bb5bdb5bd9d1811969524573e765c536d57a8359368a994ba1d

Observation bbbc8d06-cf47-4d72-9387-51097364e9c6 · outbound

This paper cites , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 60

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source=arxiv_source observed=2026-07-31T05:29:29.865889Z digest=sha256:4e67a8aec78e064e4ea6511a7ebe8009edad083300c59671de54409e1725c914

Observation df1afc76-6b28-4b30-81ad-42c11fd84022 · outbound

This paper cites Response of dark matter halos to condensation of baryons: cosmological simulations and improved adiabatic contraction model.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Response of dark matter halos to condensation of baryons: cosmological simulations and improved adiabatic contraction model

Reference 61

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source=arxiv_source observed=2026-07-31T05:29:29.868152Z digest=sha256:9fbe963562b61e85f6a06307e00f6f7657838a201c49741c7ef1c21d880e6b48

Observation 73faa035-268d-46d9-9aec-af0ae4743a79 · outbound

This paper cites , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 62

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source=arxiv_source observed=2026-07-31T05:29:29.870746Z digest=sha256:e22658e6c0bd2fe0ced8865869c260cae5d06cb40f6b6ed4fe15742a361b402c

Observation f31a2cc5-d800-42a7-8e56-adeb42970493 · outbound

This paper cites arXiv e-prints , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models arXiv e-prints , keywords =

Reference 64

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source=arxiv_source observed=2026-07-31T05:29:29.875629Z digest=sha256:4e326ae11c50321771982139fae3ee412a4c55659b8a4cd94e7b82a24e8a3257

Observation bb32dd7d-9908-4a74-96d4-9e89dde33cc5 · outbound

This paper cites The fraction of dark matter within galaxies from the IllustrisTNG simulations.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The fraction of dark matter within galaxies from the IllustrisTNG simulations

Reference 65

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source=arxiv_source observed=2026-07-31T05:29:29.877850Z digest=sha256:6ba6b46014ce6830127d3c8be4408f5ac947c3cc1b67f678fbae90cc22f0971b

Observation 0c82812b-e1d5-4731-a409-b4ec4dd39b3f · outbound

This paper cites Baryonic Imprints on DM Halos: The concentration-mass relation in the CAMELS simulations.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Baryonic Imprints on DM Halos: The concentration-mass relation in the CAMELS simulations

Reference 66

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source=arxiv_source observed=2026-07-31T05:29:29.880314Z digest=sha256:8393b1639f42f6fd8c28392f5671e3055a5919636484195fbfaa703d9329fe9b

Observation 02b46e48-bb48-43c6-a2df-f84f28df7520 · outbound

This paper cites Baryonic Imprints on DM Halos: Population Statistics from Dwarf Galaxies to Galaxy Clusters.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Baryonic Imprints on DM Halos: Population Statistics from Dwarf Galaxies to Galaxy Clusters

Reference 67

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source=arxiv_source observed=2026-07-31T05:29:29.882780Z digest=sha256:3a73f13d7d5759e5f1b9c50a7985c062d4eaffb013403fa188e1671a777e3001

Observation b66506b4-b439-45c6-9c71-f9491b87574c · outbound

This paper cites Galaxy Velocity Bias in Cosmological Simulations: Towards Percent-level Calibration.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Galaxy Velocity Bias in Cosmological Simulations: Towards Percent-level Calibration

Reference 68

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source=arxiv_source observed=2026-07-31T05:29:29.885447Z digest=sha256:a07675e1c7da22ce27e4d15e28c2274cef488ffd4ada80702a0057125aba054d

Observation 705b3622-f1b6-470a-88aa-d0e191452c6d · outbound

This paper cites Quantifying baryon effects on the matter power spectrum and the weak lensing shear correlation.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Quantifying baryon effects on the matter power spectrum and the weak lensing shear correlation

Reference 69

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source=arxiv_source observed=2026-07-31T05:29:29.888277Z digest=sha256:5b790af8d7039dfb9f6c3b090a269d87e432e6414438cb0be15cc2c81b5eef79

Observation c7a037e5-fbfd-4cf6-a17d-5dff9a8f3e79 · outbound

This paper cites A multi-simulation study of relativistic SZ temperature scalings in galaxy clusters and groups.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models A multi-simulation study of relativistic SZ temperature scalings in galaxy clusters and groups

Reference 70

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source=arxiv_source observed=2026-07-31T05:29:29.890769Z digest=sha256:b87bd6e499c9adb3798db0ebe3d8ae39bd1018404492128b4ffb8c94d4483c85

Observation 1f99c2d9-bf69-4007-a35a-9cc40b2a7929 · outbound

This paper cites \textsc{The Three Hundred} project: The \textsc{Gizmo-Simba} run.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models \textsc{The Three Hundred} project: The \textsc{Gizmo-Simba} run

Reference 71

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no resolver link, observed 2026-07-31T05:29:29.893402Z

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source=arxiv_source observed=2026-07-31T05:29:29.893402Z digest=sha256:cd2a8047babd92c8a2a3f4f988ecb9a8ac364c6487a8f7f221998f526e7ba1a7

Observation 1ab0fd9f-c88c-4e4b-a5c8-09096debbaf5 · outbound

This paper cites The scatter in the galaxy-halo connection: a machine learning analysis.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The scatter in the galaxy-halo connection: a machine learning analysis

Reference 72

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source=arxiv_source observed=2026-07-31T05:29:29.896413Z digest=sha256:dbfd4a5be18cfa86e1046c6c0ec0b1b8eac1115d732a637a517c9019d7274552

Observation ee358eb8-c71b-4d4d-ae5f-c15951b707f6 · outbound

This paper cites Stellar Property Statistics of Massive Halos from Cosmological Hydrodynamics Simulations: Common Kernel Shapes.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Stellar Property Statistics of Massive Halos from Cosmological Hydrodynamics Simulations: Common Kernel Shapes

Reference 73

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source=arxiv_source observed=2026-07-31T05:29:29.899257Z digest=sha256:6b8f975aa99d2d6439259d101e843f585a1683e584ec23cf4dac163e36c6ab83

Observation 99ea1439-feae-4a62-ab6e-d6495588bfca · outbound

This paper cites Properties of the ionized CGM and IGM: a comparison of galaxy formation models via the Sunyaev-Zel'dovich effect.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Properties of the ionized CGM and IGM: a comparison of galaxy formation models via the Sunyaev-Zel'dovich effect

Reference 74

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source=arxiv_source observed=2026-07-31T05:29:29.901862Z digest=sha256:5ccb8bda901eed6336b8cc72966b85662cc438edf5a39b95aedc341505112a97

Observation ad68e8a4-0aab-4723-83fb-d625ff46dc31 · outbound

This paper cites The impact of baryons on the matter power spectrum from the Horizon-AGN cosmological hydrodynamical simulation.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The impact of baryons on the matter power spectrum from the Horizon-AGN cosmological hydrodynamical simulation

Reference 75

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source=arxiv_source observed=2026-07-31T05:29:29.904504Z digest=sha256:954363b2c908256d5d192a41af673de2453c00fea0504bdd075f1fbe2ed6c398

Observation e82a1ff8-f4e6-48cc-aa32-f66cb3f26638 · outbound

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

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models A non-linear solution to the $S_8$ tension?

Reference 76

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Observation 35d6d1a7-7f3d-43a0-a9c3-23683516f912 · outbound

This paper cites The integrated 3-point correlation function of cosmic shear.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The integrated 3-point correlation function of cosmic shear

Reference 77

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Observation f3f02331-4a70-4073-a697-fdfd13641a70 · outbound

This paper cites , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 78

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Observation 929f0d7b-ec5b-45c0-8697-fb5791e238ca · outbound

This paper cites The effects of source clustering on weak lensing statistics.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The effects of source clustering on weak lensing statistics

Reference 79

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Observation 26d6ca6b-ac08-453b-a4a6-7877de147882 · outbound

This paper cites , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 80

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Observation fc20ff8d-1ec8-416b-81bc-ccff9aac010d · outbound

This paper cites , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , keywords =

Reference 81

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Observation 90895aa3-74ae-4e4f-b693-5df532565fa3 · outbound

This paper cites Comments on Astrophysics and Space Physics , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Comments on Astrophysics and Space Physics , keywords =

Reference 82

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Observation 670dd58b-5e91-417a-ae4a-98863024fb07 · outbound

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

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Full-sky Gravitational Lensing Simulation for Large-area Galaxy Surveys and Cosmic Microwave Background Experiments

Reference 83

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Observation afffb118-2ce1-4cad-911b-055ffc2e8434 · outbound

This paper cites Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Parameter Results.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Parameter Results

Reference 84

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Observation be887044-1f94-4c30-921a-258129f6a0ef · outbound

This paper cites Planck 2015 results. XIII. Cosmological parameters.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Planck 2015 results. XIII. Cosmological parameters

Reference 85

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Observation cb4b02b6-c1b2-40d2-bb81-458c1c2f29ce · outbound

This paper cites The Quijote simulations.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The Quijote simulations

Reference 86

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Observation 62f8bbce-679b-493f-845c-c232e96f0c19 · outbound

This paper cites arXiv e-prints , keywords =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models arXiv e-prints , keywords =

Reference 87

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Observation 9466e91a-faca-496e-bb46-05e0116a0912 · outbound

This paper cites Dark Energy Survey Year 3 results: cosmological constraints from the analysis of cosmic shear in harmonic space.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Dark Energy Survey Year 3 results: cosmological constraints from the analysis of cosmic shear in harmonic space

Reference 88

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source=arxiv_source observed=2026-07-31T05:29:29.938017Z digest=sha256:229f9ff1a020a281569b226b9c1dfccac6339ff95f460e8d3faedc7fb1f54ded

Observation 091a97d9-2bc3-4115-9a07-0ef37ef9d78b · outbound

This paper cites Enhancing cosmic shear with the multi-scale lensing PDF.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Enhancing cosmic shear with the multi-scale lensing PDF

Reference 89

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source=arxiv_source observed=2026-07-31T05:29:29.940654Z digest=sha256:393c6e9fdd8504fb5d3f9f0146085e51e00be67fd0385d9a0afd845279d0f59a

Observation 5ddb0137-82f8-4af0-a548-06cc83ab60ed · outbound

This paper cites Fisher for complements: Extracting cosmology and neutrino mass from the counts-in-cells PDF.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Fisher for complements: Extracting cosmology and neutrino mass from the counts-in-cells PDF

Reference 90

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Observation 85473290-27b2-4cc7-84ce-b86db3a60613 · outbound

This paper cites One-point statistics matter in extended cosmologies.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models One-point statistics matter in extended cosmologies

Reference 91

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source=arxiv_source observed=2026-07-31T05:29:29.945784Z digest=sha256:f3532c16913c0bb83298b3b26d08145e34ab2bad494e27e0372d1df4286a6141

Observation 99d71f82-c55b-445e-9a4d-e8d44fe7afbb · outbound

This paper cites The matter density PDF for modified gravity and dark energy with Large Deviations Theory.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models The matter density PDF for modified gravity and dark energy with Large Deviations Theory

Reference 92

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source=arxiv_source observed=2026-07-31T05:29:29.948167Z digest=sha256:ad3ee20dc12215cc433996d1a20e1a8634e4ba903410c7d77851768c03ed553f

Observation c9afd50e-a70c-46f5-b30d-fc8d79cf17d8 · outbound

This paper cites Nuw CDM cosmology from the weak lensing convergence PDF.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Nuw CDM cosmology from the weak lensing convergence PDF

Reference 93

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source=arxiv_source observed=2026-07-31T05:29:29.950562Z digest=sha256:48e36b7107948df7838f7af328d3d75c029ac242d434beedca9e35128e15300b

Observation 2296f421-4ac2-4fdd-9f6d-1a556e739e05 · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models $\kappa$TNG: Effect of Baryonic Processes on Weak Lensing with IllustrisTNG Simulations

Reference 94

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source=arxiv_source observed=2026-07-31T05:29:29.953145Z digest=sha256:273bd2718e803cc5609d2664bf2c86ee2237cea92628b2e6cf0d73bf5cfe65e8

Observation 3641f106-7d00-49b6-b4a2-cb4347905854 · outbound

This paper cites Cosmology from the integrated shear 3-point correlation function: simulated likelihood analyses with machine-learning emulators.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Cosmology from the integrated shear 3-point correlation function: simulated likelihood analyses with machine-learning emulators

Reference 95

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Observation fed20c66-4528-4b16-ba09-d63c9b3d67d7 · outbound

This paper cites , year = 2023, month = feb, volume =.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models , year = 2023, month = feb, volume =

Reference 96

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source=arxiv_source observed=2026-07-31T05:29:29.958730Z digest=sha256:1edc9a07105b008cfc63dc595c18615e175b1793b2e944af38158d0adcf114f1

Observation 2f1bc4eb-b839-4be1-8691-eab98ea63e5e · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models A roadmap to cosmological parameter analysis with third-order shear statistics I: Modelling and validation

Reference 97

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source=arxiv_source observed=2026-07-31T05:29:29.961587Z digest=sha256:c21bff6d7ae38da4e4907e5fa2660059d4258719feca0d4323b2d0f977707842

Observation 928c8088-7992-4835-9afa-5148880dccb1 · outbound

This paper cites Cosmological constraints from HSC Y1 lensing convergence PDF.

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Cosmological constraints from HSC Y1 lensing convergence PDF

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source=arxiv_source observed=2026-07-31T05:29:29.964028Z digest=sha256:b2e5734155db823bfb614e50f062c38fae329e959cf0f717a41c90c8f98928ef

Observation b052ce1a-9b88-41e9-b67a-d041a4ba89ee · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Weak lensing power spectra for precision cosmology: Multiple-deflection, reduced shear and lensing bias corrections

Reference 99

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source=arxiv_source observed=2026-07-31T05:29:29.966595Z digest=sha256:ed0f6b381f0966d0fede48a02bd4e878e69296bc250fa62d77af82913975adb2

Observation 504e983b-f3b1-469b-b505-e7a4d35653a3 · outbound

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

Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Why your model parameter confidences might be too optimistic -- unbiased estimation of the inverse covariance matrix

Reference 100

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source=arxiv_source observed=2026-07-31T05:29:29.969050Z digest=sha256:da82d1cc2a5e197bc2f5a428e48271da18350e945eb6c7a2207960d075f2d7ca

Observation a21fcd62-353c-492b-8b3d-56bb516a128d · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models Deep learning dark matter map reconstructions from DES SV weak lensing data

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source=arxiv_source observed=2026-07-31T05:29:29.971620Z digest=sha256:48592a5fad097b73d2ec6a0bb94afaf681cff193f4d2d4e27860d097a8c2f634

Observation e3fb52c0-6f6c-4111-803b-b3396e275c2d · outbound

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Primordial Physics in the Nonlinear Universe: Revealing the oscillating halo bias from cosmological collider models New Interpretable Statistics for Large Scale Structure Analysis and Generation

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