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Paper Citation Record · LEDGER

Revisiting the temperature evolution law of the CMB with gaussian processes

As of 8 August 2026, this Paper Citation Record lists 61 of 61 outbound references and 1 inbound Pith citation observation for arXiv:2505.24543.

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pith.paper-citation-record.v1
2505.24543 v1

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Pith citing papers itemized under the disclosed page cap.

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Reference resolution

61 of 61 outbound references displayed

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Outbound references

Observation cd6a62dd-e541-49a7-a915-c5c675b36e34 · outbound

This paper cites Hu and S.

Revisiting the temperature evolution law of the CMB with gaussian processes Hu and S

Reference 1

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Observation 6d15c918-eac7-4425-8241-18ec3c0cc89c · outbound

This paper cites Dodelson and F.

Revisiting the temperature evolution law of the CMB with gaussian processes Dodelson and F

Reference 2

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Observation c2ff8c1c-4f48-48ac-9396-96fb54f9ac8e · outbound

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

Revisiting the temperature evolution law of the CMB with gaussian processes Planck 2018 results. VI. Cosmological parameters

Reference 3

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Observation bf69fbc6-6079-4b1f-896a-945d30b1c49c · outbound

This paper cites The Atacama Cosmology Telescope: DR6 Power Spectra, Likelihoods and $\Lambda$CDM Parameters.

Revisiting the temperature evolution law of the CMB with gaussian processes The Atacama Cosmology Telescope: DR6 Power Spectra, Likelihoods and $\Lambda$CDM Parameters

Reference 4

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Observation 2e33db9b-5a46-4e4d-be02-970a2fa7029d · outbound

This paper cites Constraints on the CMB Temperature Evolution using Multi-Band Measurements of the Sunyaev Zel'dovich Effect with the South Pole Telescope.

Revisiting the temperature evolution law of the CMB with gaussian processes Constraints on the CMB Temperature Evolution using Multi-Band Measurements of the Sunyaev Zel'dovich Effect with the South Pole Telescope

Reference 5

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This paper cites Non-gaussianity in the foreground-reduced CMB maps.

Revisiting the temperature evolution law of the CMB with gaussian processes Non-gaussianity in the foreground-reduced CMB maps

Reference 6

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Observation 01feffe6-b9b6-4b05-871d-8745107f334b · outbound

This paper cites Searching for non-Gaussianity in the WMAP data.

Revisiting the temperature evolution law of the CMB with gaussian processes Searching for non-Gaussianity in the WMAP data

Reference 7

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Observation 8256588b-8bfe-48ff-8e20-64202ed8df38 · outbound

This paper cites A note on the large-angle anisotropies in the WMAP cut-sky maps.

Revisiting the temperature evolution law of the CMB with gaussian processes A note on the large-angle anisotropies in the WMAP cut-sky maps

Reference 8

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This paper cites Two-point Correlation Function of WMAP 9 year data.

Revisiting the temperature evolution law of the CMB with gaussian processes Two-point Correlation Function of WMAP 9 year data

Reference 9

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

Revisiting the temperature evolution law of the CMB with gaussian processes Planck 2018 results. VII. Isotropy and Statistics of the CMB

Reference 10

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

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This paper cites The Cosmic Microwave Background Spectrum from the Full COBE/FIRAS Data Set.

Revisiting the temperature evolution law of the CMB with gaussian processes The Cosmic Microwave Background Spectrum from the Full COBE/FIRAS Data Set

Reference 13

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This paper cites Estimation of the CMB temperature from atomic C\,{\sc i} and molecular CO lines in the interstellar medium of early galaxies.

Revisiting the temperature evolution law of the CMB with gaussian processes Estimation of the CMB temperature from atomic C\,{\sc i} and molecular CO lines in the interstellar medium of early galaxies

Reference 14

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This paper cites Bersanelli, D.

Revisiting the temperature evolution law of the CMB with gaussian processes Bersanelli, D

Reference 15

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Revisiting the temperature evolution law of the CMB with gaussian processes The Temperature of the Cosmic Microwave Background

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

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This paper cites The evolution of the Cosmic Microwave Background Temperature: Measurements of TCMB at high redshift from carbon monoxide excitation.

Revisiting the temperature evolution law of the CMB with gaussian processes The evolution of the Cosmic Microwave Background Temperature: Measurements of TCMB at high redshift from carbon monoxide excitation

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This paper cites Constraining dark energy with Hubble parameter measurements: an analysis including future redshift-drift observations.

Revisiting the temperature evolution law of the CMB with gaussian processes Constraining dark energy with Hubble parameter measurements: an analysis including future redshift-drift observations

Reference 20

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Revisiting the temperature evolution law of the CMB with gaussian processes Measuring the Hubble constant from the cooling of the CMB monopole

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Revisiting the temperature evolution law of the CMB with gaussian processes Redshift Dependence of the CMB Temperature from S-Z Measurements

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Revisiting the temperature evolution law of the CMB with gaussian processes Constraining the evolution of the CMB temperature with SZ measurements from Planck data

Reference 23

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Revisiting the temperature evolution law of the CMB with gaussian processes Constraining the redshift evolution of the Cosmic Microwave Background black-body temperature with PLANCK data

Reference 24

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Revisiting the temperature evolution law of the CMB with gaussian processes Machine Learning meets the redshift evolution of the CMB Temperature

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Revisiting the temperature evolution law of the CMB with gaussian processes Constraining CMB temperature evolution with Sunyaev-Zel'dovich galaxy clusters from the Atacama Cosmology Telescope

Reference 26

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Revisiting the temperature evolution law of the CMB with gaussian processes Microwave Background Temperature at a Redshift of 6.34 from H2O Absorption

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

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Revisiting the temperature evolution law of the CMB with gaussian processes Breaking of the equivalence principle in the electromagnetic sector and its cosmological signatures

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Revisiting the temperature evolution law of the CMB with gaussian processes Non-parametric reconstruction of the fine structure constant with galaxy clusters

Reference 30

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Revisiting the temperature evolution law of the CMB with gaussian processes Fabbri, apss 77, 529 (1981)

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Revisiting the temperature evolution law of the CMB with gaussian processes Rephaeli, apj 241, 858 (1980)

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

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Observation be0b5e35-2023-4da1-a477-af6a5eed3982 · outbound

This paper cites Is there evidence for a hotter Universe?.

Revisiting the temperature evolution law of the CMB with gaussian processes Is there evidence for a hotter Universe?

Reference 36

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Observation 9662d868-cb73-4394-8e0c-1211e0278094 · outbound

This paper cites Measurement of the $T_{\rm CMB}$ evolution from the Sunyaev-Zel'dovich effect.

Revisiting the temperature evolution law of the CMB with gaussian processes Measurement of the $T_{\rm CMB}$ evolution from the Sunyaev-Zel'dovich effect

Reference 37

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No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.

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Observation 78ada72e-22af-48a4-9f6b-6463320615a7 · outbound

This paper cites Planck 2013 results. XXIX. Planck catalogue of Sunyaev-Zeldovich sources.

Revisiting the temperature evolution law of the CMB with gaussian processes Planck 2013 results. XXIX. Planck catalogue of Sunyaev-Zeldovich sources

Reference 38

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Observation 18fb1246-b2d0-472a-a984-52274095f542 · outbound

This paper cites Galaxy clusters discovered via the Sunyaev-Zel'dovich effect in the first 720 square degrees of the South Pole Telescope survey.

Revisiting the temperature evolution law of the CMB with gaussian processes Galaxy clusters discovered via the Sunyaev-Zel'dovich effect in the first 720 square degrees of the South Pole Telescope survey

Reference 39

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Observation b77244e5-a044-4d3d-84cd-54f54413d64f · outbound

This paper cites Seikel, C.

Revisiting the temperature evolution law of the CMB with gaussian processes Seikel, C

Reference 40

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Observation 46286e28-9262-4b10-8d3d-3863283047e0 · outbound

This paper cites Shafieloo, A.

Revisiting the temperature evolution law of the CMB with gaussian processes Shafieloo, A

Reference 41

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Observation b0421106-96e6-4cd3-8631-a30da84b1aba · outbound

This paper cites Optimising Gaussian processes for reconstructing dark energy dynamics from supernovae.

Revisiting the temperature evolution law of the CMB with gaussian processes Optimising Gaussian processes for reconstructing dark energy dynamics from supernovae

Reference 42

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Observation a15c9ae5-0b36-4878-a76c-3d77d9a2516c · outbound

This paper cites Zhang and J.-Q.

Revisiting the temperature evolution law of the CMB with gaussian processes Zhang and J.-Q

Reference 43

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Observation 62223ea5-60b2-4693-b513-ea75f7caeb57 · outbound

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

Reference 44

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Observation 75e30b92-ae41-4ff7-ab6f-cb36f565e41c · outbound

This paper cites Sahni, A.

Revisiting the temperature evolution law of the CMB with gaussian processes Sahni, A

Reference 45

Resolution
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Observation 5b9ed7f9-d8e1-4f32-90df-dcfa45cc5b13 · outbound

This paper cites Belgacem, S.

Revisiting the temperature evolution law of the CMB with gaussian processes Belgacem, S

Reference 46

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

Reference 47

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Observation b2bb540b-0f54-4013-8562-bc224ecd69a6 · outbound

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

Reference 48

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Observation 22b4ed92-de1b-49cf-9ccd-a61f29414a36 · outbound

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Revisiting the temperature evolution law of the CMB with gaussian processes Unresolved cited work

Reference 49

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Observation ef66d08d-60da-49cd-96bb-c00bb2842fa6 · outbound

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Revisiting the temperature evolution law of the CMB with gaussian processes Zhang and H

Reference 50

Resolution
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Observation aeffe423-4efc-4457-9116-681c32d8da12 · outbound

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Revisiting the temperature evolution law of the CMB with gaussian processes Wang and X.-H

Reference 51

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Observation e575854e-e9aa-4581-af78-1a37def6e4be · outbound

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Revisiting the temperature evolution law of the CMB with gaussian processes Sharma, A

Reference 52

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Observation 12ca0c7e-7308-473b-88a4-8696194ccd0c · outbound

This paper cites Measurements of $H_0$ and reconstruction of the dark energy properties from a model-independent joint analysis.

Revisiting the temperature evolution law of the CMB with gaussian processes Measurements of $H_0$ and reconstruction of the dark energy properties from a model-independent joint analysis

Reference 53

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Observation 60413145-fb44-4a71-b967-ac77087a4ea7 · outbound

This paper cites Exploring new physics in the late Universe's expansion through non-parametric inference.

Revisiting the temperature evolution law of the CMB with gaussian processes Exploring new physics in the late Universe's expansion through non-parametric inference

Reference 54

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Observation 42c99660-1307-42c9-ba80-3652ee345f7c · outbound

This paper cites Reconstructing the growth index $\gamma$ with Gaussian Processes.

Revisiting the temperature evolution law of the CMB with gaussian processes Reconstructing the growth index $\gamma$ with Gaussian Processes

Reference 55

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Observation 068b7339-8499-4ebd-a1f3-eee74a166bfb · outbound

This paper cites Inferring $S_8(z)$ and $\gamma(z)$ with cosmic growth rate measurements using machine learning.

Revisiting the temperature evolution law of the CMB with gaussian processes Inferring $S_8(z)$ and $\gamma(z)$ with cosmic growth rate measurements using machine learning

Reference 56

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Observation e612a71e-b091-4413-b731-587fc9a39fc5 · outbound

This paper cites The homogeneity scale and the growth rate of cosmic structures.

Revisiting the temperature evolution law of the CMB with gaussian processes The homogeneity scale and the growth rate of cosmic structures

Reference 57

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Observation d7165bfe-650b-4e0c-9840-32b80d68264e · outbound

This paper cites Reconstruction of the dark sectors' interaction: A model-independent inference and forecast from GW standard sirens.

Revisiting the temperature evolution law of the CMB with gaussian processes Reconstruction of the dark sectors' interaction: A model-independent inference and forecast from GW standard sirens

Reference 58

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Observation a542b883-f464-4f7b-bd58-c36a0b53552d · outbound

This paper cites Testing distance duality with CMB anisotropies.

Revisiting the temperature evolution law of the CMB with gaussian processes Testing distance duality with CMB anisotropies

Reference 59

Resolution
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Observation 3fa0a9fb-44a5-4fa9-9be9-b9481efedbdf · outbound

This paper cites Cosmological bounds on dark matter-photon coupling.

Revisiting the temperature evolution law of the CMB with gaussian processes Cosmological bounds on dark matter-photon coupling

Reference 60

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Observation c831659e-406d-4e32-acc7-c71ad7b658ba · outbound

This paper cites Cosmographic view on the $H_0$ and $\sigma_8$ tensions.

Revisiting the temperature evolution law of the CMB with gaussian processes Cosmographic view on the $H_0$ and $\sigma_8$ tensions

Reference 61

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Pith citing papers

Observation 974b9bf4-cb81-4236-8e1c-3c0c8fb8abde · inbound

Is $\omega_0 \omega_a$CDM a good model for the clumpy Universe? cites this paper.

Is $\omega_0 \omega_a$CDM a good model for the clumpy Universe? Revisiting the temperature evolution law of the CMB with gaussian processes

Reference 9

Resolution
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