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Paper Citation Record · LEDGER

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing

As of 7 August 2026, this Paper Citation Record lists 66 of 66 outbound references and 0 inbound Pith citation observations for arXiv:2608.04868.

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pith.paper-citation-record.v1
2608.04868 v1

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Reference resolution

66 of 66 outbound references displayed

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External citation measurements

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Outbound references

Observation 0b4458cf-899e-4b6f-b7cf-866d46917c20 · outbound

This paper cites Searching for patchy reionization from cosmic microwave background with hybrid quadratic estimators.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Searching for patchy reionization from cosmic microwave background with hybrid quadratic estimators

Reference 1

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Observation 5a4c59a4-5986-4181-89d3-7aa255ba11fe · outbound

This paper cites Inference of gravitational lensing and patchy reionization with future CMB data.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Inference of gravitational lensing and patchy reionization with future CMB data

Reference 2

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Observation 3f87ea28-1a9c-4931-9f22-8e1d8ad3292c · outbound

This paper cites Reconstructing Patchy Reionization from the Cosmic Microwave Background.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Reconstructing Patchy Reionization from the Cosmic Microwave Background

Reference 3

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Observation 1b69093b-2da9-4c1b-b763-add98afc469f · outbound

This paper cites A Cross-Internal Linear Combination Approach to Probe the Secondary CMB Anisotropies: Kinematic Sunyaev-Zel{'}dovich Effect and CMB Lensing.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing A Cross-Internal Linear Combination Approach to Probe the Secondary CMB Anisotropies: Kinematic Sunyaev-Zel{'}dovich Effect and CMB Lensing

Reference 4

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Observation fd4dc77d-85fc-45f1-848f-7d6fdfc83251 · outbound

This paper cites Cosmological Parameter Forecasts for a CMB-HD Survey.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Cosmological Parameter Forecasts for a CMB-HD Survey

Reference 5

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This paper cites The Simons Observatory: Constraining inflationary gravitational waves with multi-tracer B-mode delensing.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The Simons Observatory: Constraining inflationary gravitational waves with multi-tracer B-mode delensing

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Observation 165a37a0-4e40-47c2-9d76-bc30fd4cb907 · outbound

This paper cites Extragalactic Foreground Contamination in Temperature-based CMB Lens Reconstruction.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Extragalactic Foreground Contamination in Temperature-based CMB Lens Reconstruction

Reference 7

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Observation ff7a4b45-ee31-4d7e-9974-9811d95a7277 · outbound

This paper cites The Benefits of CMB Delensing.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The Benefits of CMB Delensing

Reference 8

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This paper cites SPT-3G D1: A Measurement of Secondary Cosmic Microwave Background Anisotropy Power.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing SPT-3G D1: A Measurement of Secondary Cosmic Microwave Background Anisotropy Power

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Unresolved cited work

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Unresolved cited work

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This paper cites The Atacama Cosmology Telescope: A Measurement of the 600< ell <8000 Cosmic Microwave Background Power Spectrum at 148 GHz.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The Atacama Cosmology Telescope: A Measurement of the 600< ell <8000 Cosmic Microwave Background Power Spectrum at 148 GHz

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Weak Gravitational Lensing of the CMB

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Model independent variance cancellation in CMB lensing cross-correlations

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Simulated catalogs and maps of radio galaxies at millimeter wavelengths in Websky

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Radio and Millimeter Continuum Surveys and their Astrophysical Implications

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Comments on Astrophysics and Space Physics , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Unresolved cited work

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Journal of Low Temperature Physics , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The 10 Meter South Pole Telescope

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Journal of Low Temperature Physics , keywords =

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing CMB lensing power spectrum estimation without instrument noise bias

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing A high resolution foreground cleaned CMB map from WMAP

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Enhancing Measurements of the CMB Blackbody Temperature Power Spectrum by Removing CIB and Thermal Sunyaev-Zel'dovich Contamination Using External Galaxy Catalogs

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing CCAT-prime Collaboration: Science Goals and Forecasts with Prime-Cam on the Fred Young Submillimeter Telescope

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The Simons Observatory: Science goals and forecasts

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The Simons Observatory: Science Goals and Forecasts for the Enhanced Large Aperture Telescope

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Unresolved cited work

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Improved Modeling of the Kinematic Sunyaev-Zel'dovich Projected-Fields signal and its Cosmological Dependence

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Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Beyond the Damping Tail: Cross-Correlating the Kinetic Sunyaev-Zel'dovich Effect with Cosmic Shear

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Observation 36847326-1c16-43c7-bef1-d09005eb30c1 · outbound

This paper cites MUSE: Marginal Unbiased Score Expansion and Application to CMB Lensing.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing MUSE: Marginal Unbiased Score Expansion and Application to CMB Lensing

Reference 36

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Observation d1843e17-7baf-40b7-b82f-1ce4c8815bcc · outbound

This paper cites Maximum a posteriori CMB lensing reconstruction.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Maximum a posteriori CMB lensing reconstruction

Reference 37

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Observation db8e38c1-5621-4d49-9368-8bec7b68e263 · outbound

This paper cites CMB Lensing Reconstruction on the Full Sky.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing CMB Lensing Reconstruction on the Full Sky

Reference 38

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Observation 0a38c724-0399-4083-a901-deeafdb4d46b · outbound

This paper cites An Improved Measurement of the Secondary Cosmic Microwave Background Anisotropies from the SPT-SZ + SPTpol Surveys.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing An Improved Measurement of the Secondary Cosmic Microwave Background Anisotropies from the SPT-SZ + SPTpol Surveys

Reference 39

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Observation db0ca5fb-ef23-4efc-a315-ac83778ee9ff · outbound

This paper cites , keywords =.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing , keywords =

Reference 40

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Observation 96c88268-1ffb-481f-980e-03cbdafc048b · outbound

This paper cites The CMB optical depth constrains the duration of reionization.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The CMB optical depth constrains the duration of reionization

Reference 41

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Observation cefa2442-10a9-44ec-95ce-db38592167a3 · outbound

This paper cites Probing the Physics of Reionization Using kSZ Power Spectrum from Current and Upcoming CMB Surveys.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Probing the Physics of Reionization Using kSZ Power Spectrum from Current and Upcoming CMB Surveys

Reference 42

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Observation fc4f4dd3-35f0-46a8-b364-7351d2c5ae75 · outbound

This paper cites CMB-HD: Astro2020 RFI Response.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing CMB-HD: Astro2020 RFI Response

Reference 43

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Observation f4b0c97c-2176-46b2-9a52-63cf4f342528 · outbound

This paper cites , keywords =.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing , keywords =

Reference 44

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Observation 76e72740-57b5-4f2b-ab91-b560a2e24703 · outbound

This paper cites Lower bias, lower noise CMB lensing with foreground-hardened estimators.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Lower bias, lower noise CMB lensing with foreground-hardened estimators

Reference 45

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Observation aec689d8-8175-4c8b-a885-43edf981b4cf · outbound

This paper cites Combining ILC and moment expansion techniques for extracting average-sky signals and CMB anisotropies.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Combining ILC and moment expansion techniques for extracting average-sky signals and CMB anisotropies

Reference 46

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Observation c68d8cf3-aaa6-4900-9428-90dc45d31d01 · outbound

This paper cites Rethinking CMB foregrounds: systematic extension of foreground parameterizations.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Rethinking CMB foregrounds: systematic extension of foreground parameterizations

Reference 47

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Observation 979ad7e0-3124-411f-8692-9b58b64f9887 · outbound

This paper cites and Bond, J.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing and Bond, J

Reference 48

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Observation ff93e697-7021-4e84-beda-9c4cdbdf2df3 · outbound

This paper cites Subtracting the kinetic Sunyaev-Zeldovich effect from the cosmic microwave background with surveys of large-scale structure.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Subtracting the kinetic Sunyaev-Zeldovich effect from the cosmic microwave background with surveys of large-scale structure

Reference 49

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Observation f84e369a-2a80-4c40-9dbf-fb7ce530ec46 · outbound

This paper cites and Bhattacharya, S.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing and Bhattacharya, S

Reference 50

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Observation 9ce7ec43-8dd8-4426-8632-c91099585865 · outbound

This paper cites Probing early structure and model-independent neutrino mass with high-redshift CMB lensing mass maps.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Probing early structure and model-independent neutrino mass with high-redshift CMB lensing mass maps

Reference 51

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Observation 45caedc4-b360-4d6a-9330-644756800fb3 · outbound

This paper cites Avoiding baryonic feedback effects on neutrino mass measurements from CMB lensing.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Avoiding baryonic feedback effects on neutrino mass measurements from CMB lensing

Reference 52

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Observation 0ff0f5d7-57bd-4869-8930-8d6eaecce9bc · outbound

This paper cites CMB temperature lensing power reconstruction.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing CMB temperature lensing power reconstruction

Reference 53

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Observation 2ff503e9-2915-42a4-8109-be095774311a · outbound

This paper cites Bias-Hardened CMB Lensing.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Bias-Hardened CMB Lensing

Reference 54

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Observation 08b0bee1-260a-40b0-aefe-cc78792954f3 · outbound

This paper cites Constraining the Baryon Abundance with the Kinematic Sunyaev-Zel'dovich Effect: Projected-Field Detection Using Planck, WMAP, and unWISE.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Constraining the Baryon Abundance with the Kinematic Sunyaev-Zel'dovich Effect: Projected-Field Detection Using Planck, WMAP, and unWISE

Reference 55

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source=arxiv_source observed=2026-08-06T14:44:45.017988Z digest=sha256:171303f0a191d38aa9918195a462564ab844eebd3a2554a7dabcfa88e8fab74e

Observation e780e514-c1d6-4be7-bba2-4063aded6112 · outbound

This paper cites Projected-Field Kinetic Sunyaev-Zel'dovich Cross-Correlations: Halo Model and Forecasts.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Projected-Field Kinetic Sunyaev-Zel'dovich Cross-Correlations: Halo Model and Forecasts

Reference 56

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source=arxiv_source observed=2026-08-06T14:44:45.083101Z digest=sha256:71d70793ea3b7e4fd1a53f22c3d010800d07c7b37ca3d18aafcd0e3077007234

Observation 9146392e-ff6f-4c86-9574-1c2c07275d0f · outbound

This paper cites The Kinematic Sunyaev-Zel'dovich Effect with Projected Fields: A Novel Probe of the Baryon Distribution with Planck, WMAP, and WISE Data.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The Kinematic Sunyaev-Zel'dovich Effect with Projected Fields: A Novel Probe of the Baryon Distribution with Planck, WMAP, and WISE Data

Reference 57

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source=arxiv_source observed=2026-08-06T14:44:45.156219Z digest=sha256:5d9ba15a950849b74fbf4474acf5f7bcbd85e97b6145776790f5d6af6ee57e0d

Observation 321cc240-05ba-4869-adcb-f87725b566c1 · outbound

This paper cites Colin and Battaglia, Nick and Liu, Jia and Spergel, David N.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Colin and Battaglia, Nick and Liu, Jia and Spergel, David N

Reference 58

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source=arxiv_source observed=2026-08-06T14:44:45.260698Z digest=sha256:3521457d24cf266ed13ba9c2439785a0774e5ccfb2155094d1bed6313a13db92

Observation 989b9c41-f395-4ce5-b196-3aefddfdb86d · outbound

This paper cites The Atacama Cosmology Telescope: Reionization kSZ trispectrum methodology and limits.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing The Atacama Cosmology Telescope: Reionization kSZ trispectrum methodology and limits

Reference 59

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source=arxiv_source observed=2026-08-06T14:44:45.442725Z digest=sha256:015cf91d649e55246d22041d802edd6e94743e3e123c57ec41a1f4c2d0bb1567

Observation a1d5823e-d1ab-4860-866c-70a931bd4f6c · outbound

This paper cites First Constraints on the Epoch of Reionization Using the non-Gaussianity of the Kinematic Sunyaev-Zel{'}dovich Effect from the South Pole Telescope and {\it Herschel}-SPIRE Observations.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing First Constraints on the Epoch of Reionization Using the non-Gaussianity of the Kinematic Sunyaev-Zel{'}dovich Effect from the South Pole Telescope and {\it Herschel}-SPIRE Observations

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source=arxiv_source observed=2026-08-06T14:44:45.661905Z digest=sha256:766177f2edcab15ff578951228730d5846fdac6f4ef4844120d17fec1a5873c9

Observation b16a02f8-ed67-4344-8c36-56b8286f86f9 · outbound

This paper cites Mitigating the optical depth degeneracy using the kinematic Sunyaev-Zel'dovich effect with CMB-S4.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Mitigating the optical depth degeneracy using the kinematic Sunyaev-Zel'dovich effect with CMB-S4

Reference 61

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source=arxiv_source observed=2026-08-06T14:44:45.730839Z digest=sha256:84468570d87cbdc638bb60c3291da219f8765d687212cfc532fc4aee8187fa61

Observation 5a20364f-03a9-47f2-93bd-4de4ccc75fd7 · outbound

This paper cites Characterizing the Epoch of Reionization with the small-scale CMB: constraints on the optical depth and physical parameters.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Characterizing the Epoch of Reionization with the small-scale CMB: constraints on the optical depth and physical parameters

Reference 62

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source=arxiv_source observed=2026-08-06T14:44:45.779455Z digest=sha256:a9f7254fa898cb5fe687e75e398c3aaddda97a72a7f7873c3e7d395bc2af59ec

Observation 0ab49115-f845-4ddf-aaf2-6d5401912323 · outbound

This paper cites and Ferraro, Simone , year=.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing and Ferraro, Simone , year=

Reference 63

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source=arxiv_source observed=2026-08-06T14:44:45.825193Z digest=sha256:88f69253e6d8cf5691afd613fb5b98eed5161f68f30386ee6815648e66d0e2db

Observation 0a7e1c64-a470-4cfe-9934-e261d5ca633a · outbound

This paper cites AMBER: A Semi-numerical Abundance Matching Box for the Epoch of Reionization.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing AMBER: A Semi-numerical Abundance Matching Box for the Epoch of Reionization

Reference 64

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source=arxiv_source observed=2026-08-06T14:44:45.875605Z digest=sha256:e45e4ae3b65a99597891959f15a3a9602fed1a0501902425bc1450c7bddb314f

Observation 4a7bc8d6-0097-4d6f-a937-0adf75ca6572 · outbound

This paper cites Patchy Kinetic Sunyaev-Zel'dovich Effect with Controlled Reionization History and Morphology.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Patchy Kinetic Sunyaev-Zel'dovich Effect with Controlled Reionization History and Morphology

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source=arxiv_source observed=2026-08-06T14:44:45.924800Z digest=sha256:245abe05faba4880bd44e23d927bd6f8eeb3aef03af2e562eb10216826316540

Observation 6da89f7b-a4f2-42c0-8163-7756cb23ef62 · outbound

This paper cites Prospects for kSZ2–Galaxy Cross-correlations during Reionization , volume=.

Characterising the epoch of reionisation using the cross-correlation of the kSZ effect and CMB lensing Prospects for kSZ2–Galaxy Cross-correlations during Reionization , volume=

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source=arxiv_source observed=2026-08-06T14:44:45.978952Z digest=sha256:71ba22c4894981de8f18f41a6bc25b1f38bed6b5486447c224e2ab7d7e67767c

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