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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift

As of 21 August 2026, this Paper Citation Record lists 100 of 100 outbound references and 1 inbound Pith citation observation for arXiv:2608.01919.

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2608.01919 v1

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Pith citing papers itemized under the disclosed page cap.

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Outbound references

Observation 0acfef4a-50c9-441c-b722-ce36e01ee71b · outbound

This paper cites APS Lensing.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift APS Lensing

Reference 1

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Observation 17ce78bd-4de4-4aef-9792-4181cc0c85a6 · outbound

This paper cites The first moves the tanh step in the CAMB parameterization, Ttanh = ∂Cℓ ∂τexc fPBH=0 ×∆τ exc,(A5) evaluated by central difference inz reio about the fiducial model.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The first moves the tanh step in the CAMB parameterization, Ttanh = ∂Cℓ ∂τexc fPBH=0 ×∆τ exc,(A5) evaluated by central difference inz reio about the fiducial model

Reference 2

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Observation 3a5ef28c-6d60-459e-89e2-848cb6d649ee · outbound

This paper cites We calibrate theEEblock so thatσ(τ) = 0.0065 matches our ΛCDM Planck chain.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift We calibrate theEEblock so thatσ(τ) = 0.0065 matches our ΛCDM Planck chain

Reference 3

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Observation c1493043-b210-4837-b692-f1a9a1a77439 · outbound

This paper cites We letθdenote the cosmological parameters varied in the fit, andλthe parameters of the added signal, which are held fixed.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift We letθdenote the cosmological parameters varied in the fit, andλthe parameters of the added signal, which are held fixed

Reference 4

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Observation 9a3a081e-5dc0-48c0-9bab-4c36385afc07 · outbound

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

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Atacama Cosmology Telescope: DR6 Power Spectra, Likelihoods and $\Lambda$CDM Parameters

Reference 5

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Observation e95ad22a-1ad2-4d0e-955b-3300dea0442c · outbound

This paper cites Cosmology From CMB Lensing and Delensed EE Power Spectra Using 2019-2020 SPT-3G Polarization Data.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Cosmology From CMB Lensing and Delensed EE Power Spectra Using 2019-2020 SPT-3G Polarization Data

Reference 6

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Observation 5ec89115-8e7a-4bd4-b6d6-e2d198f1c3f9 · outbound

This paper cites The low-ℓ EEdata pin the amplitude of the reionization bump, andz reio can be adjusted to maintain that part of the fit.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The low-ℓ EEdata pin the amplitude of the reionization bump, andz reio can be adjusted to maintain that part of the fit

Reference 7

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Observation d4c81891-37f5-48a3-b399-ffaa1d01b4f7 · outbound

This paper cites DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift DESI DR2 Results II: Measurements of Baryon Acoustic Oscillations and Cosmological Constraints

Reference 8

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Observation 39e7dc35-7445-4356-a1fe-f01da9475423 · outbound

This paper cites Planck 2018 results. V. CMB power spectra and likelihoods.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Planck 2018 results. V. CMB power spectra and likelihoods

Reference 9

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Observation cbfbee1d-57dd-4665-ad27-4f9f9fe74721 · outbound

This paper cites CMB lensing from Planck PR4 maps.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMB lensing from Planck PR4 maps

Reference 10

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Observation d1eaa6fe-473c-40b7-b324-eb38bc5156ea · outbound

This paper cites The Atacama Cosmology Telescope: A Measurement of the DR6 CMB Lensing Power Spectrum and its Implications for Structure Growth.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Atacama Cosmology Telescope: A Measurement of the DR6 CMB Lensing Power Spectrum and its Implications for Structure Growth

Reference 11

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Observation 2ac9927b-7a1b-42c3-810d-7b5fb29fdeb0 · outbound

This paper cites The Cosmological Preference for Negative Neutrino Mass.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Cosmological Preference for Negative Neutrino Mass

Reference 12

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This paper cites The BAO-CMB Tension and Implications for Inflation.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The BAO-CMB Tension and Implications for Inflation

Reference 13

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift SPT-3G D1: CMB temperature and polarization power spectra and cosmology from 2019 and 2020 observations of the SPT-3G Main field

Reference 14

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This paper cites Massive neutrinos and cosmic composition.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Massive neutrinos and cosmic composition

Reference 15

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift What's the matter with $\Sigma m_{\nu}$?

Reference 16

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

Reference 17

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift No $\nu$s is Good News

Reference 18

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Neutrino mass limits and decaying dark matter: background evolution versus perturbations

Reference 19

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift DESI and the Hubble tension in light of modified recombination

Reference 20

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Negative neutrino masses as a mirage of dark energy

Reference 21

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Thawing Dark Energy and Massive Neutrinos in Light of DESI

Reference 22

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Resolving the Planck-DESI tension by nonminimally coupled quintessence

Reference 23

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Alleviating cosmological tensions with a hybrid dark sector

Reference 24

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Khoury, M.-X

Reference 25

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Turning a negative neutrino mass into a positive optical depth

Reference 26

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Planck intermediate results. LVII. Joint Planck LFI and HFI data processing

Reference 27

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Impact of ACT DR6 and DESI DR2 for Early Dark Energy and the Hubble tension

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift SPT-3G D1: Axion Early Dark Energy with CMB experiments and DESI

Reference 30

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Hot New Early Dark Energy: Dark Radiation Matter Decoupling

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Sailer, G

Reference 32

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CLASS Angular Power Spectra and Map-Component Analysis for 40 GHz Observations through 2022

Reference 33

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift A Measurement of the Largest-Scale CMB E-mode Polarization with CLASS

Reference 34

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Reionization optical depth determination from Planck HFI data with ten percent accuracy

Reference 35

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift

Reference 36

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Inference of the optical depth to reionization from low multipole temperature and polarisation Planck data

Reference 37

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Observation 1af39867-5636-486b-93d6-ffce04c61a62 · outbound

This paper cites CMB power spectra and cosmological parameters from Planck PR4 with CamSpec.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMB power spectra and cosmological parameters from Planck PR4 with CamSpec

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Observation f46b605e-8c9e-4d6b-8fb3-649b9c692345 · outbound

This paper cites Cosmological parameters derived from the final (PR4) Planck data release.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Cosmological parameters derived from the final (PR4) Planck data release

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Observation fad16dee-d86d-4631-9c6b-e6f60d245b54 · outbound

This paper cites Genesini, G.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Genesini, G

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Observation bd70e8d4-d48c-4de9-957a-f9af3e05f391 · outbound

This paper cites Does Planck 2015 polarization favor high redshift reionization?.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Does Planck 2015 polarization favor high redshift reionization?

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Observation 4f27be28-6357-4c5c-8af2-41ffc469e73e · outbound

This paper cites Rapid late-time reionization: constraints and cosmological implications.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Rapid late-time reionization: constraints and cosmological implications

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Observation dd2d00b2-4ede-42c3-bed9-ec8ebcb9f468 · outbound

This paper cites Joining bits and pieces of reionization history.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Joining bits and pieces of reionization history

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Observation 3b8329a5-153c-444f-8cd7-41d761bd2eee · outbound

This paper cites Holder, Z.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Holder, Z

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Observation e25a0d10-52ee-451f-a6a6-2e12322c5e7e · outbound

This paper cites Model-independent constraints on reionization from large-scale CMB polarization.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Model-independent constraints on reionization from large-scale CMB polarization

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Observation 390d74ad-fc5d-48c3-832c-3300733c4651 · outbound

This paper cites CMBPol Mission Concept Study: Reionization Science with the Cosmic Microwave Background.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMBPol Mission Concept Study: Reionization Science with the Cosmic Microwave Background

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Observation be5ad9db-f151-4cad-a46b-5f616aafabee · outbound

This paper cites Complete Reionization Constraints from Planck 2015 Polarization.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Complete Reionization Constraints from Planck 2015 Polarization

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Observation d63d204c-6ee4-4b99-9e22-83731bceb13d · outbound

This paper cites Cosmological constraints on exotic injection of electromagnetic energy.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Cosmological constraints on exotic injection of electromagnetic energy

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source=pdf_text observed=2026-08-04T18:21:10.029703Z digest=sha256:208110ff76ae732cfe6b4c3e436c370cf0162638f3c38b9289ef0bf290815f49

Observation 8595e570-c0e4-468f-9d91-0029462d3b73 · outbound

This paper cites Cosmic Microwave Background Constraints in Light of Priors Over Reionization Histories.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Cosmic Microwave Background Constraints in Light of Priors Over Reionization Histories

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source=pdf_text observed=2026-08-04T18:21:09.498630Z digest=sha256:5d362a8b7528665ef6be0780a93a4673ff04968ac4b03759ee7481d6398e2580

Observation d0a00b72-6a75-485d-bebf-17e5736aba5c · outbound

This paper cites Dark Twilight Joined with the Light of Dawn to Unveil the Reionization History.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Dark Twilight Joined with the Light of Dawn to Unveil the Reionization History

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source=pdf_text observed=2026-08-04T18:21:09.575538Z digest=sha256:9169e35d8270ed03a8cc9368f5fc10711d719061d1919c80cd754a270e7175ac

Observation 8071d4cb-41a2-4628-b2eb-fec40a5638f8 · outbound

This paper cites The Impact of Population III.1 Flash Reionization for CMB Polarization and Thomson Scattering Optical Depth.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Impact of Population III.1 Flash Reionization for CMB Polarization and Thomson Scattering Optical Depth

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Observation 8caf6aa9-5c7f-445c-892a-9ad581508647 · outbound

This paper cites Cheng, Z.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Cheng, Z

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Observation e96ad57d-37f9-41bb-8586-74cc82d6b8ab · outbound

This paper cites Ilicet al., Reconstructing the epoch of reionisation with Planck PR4, Astron.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Ilicet al., Reconstructing the epoch of reionisation with Planck PR4, Astron

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Observation 3201be91-8d16-4965-b3d1-f458b01ac816 · outbound

This paper cites an unresolved cited work.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation 5b211759-d9af-4c73-a2a8-2e183501b9c5 · outbound

This paper cites CMB constraints on Dark Matter models with large annihilation cross-section.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMB constraints on Dark Matter models with large annihilation cross-section

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Observation 8302c124-1496-4521-ae66-b13eaae7071a · outbound

This paper cites CMB and BBN constraints on evaporating primordial black holes revisited.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMB and BBN constraints on evaporating primordial black holes revisited

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Observation b7822fe0-f62e-4823-8dad-fe11353f16c9 · outbound

This paper cites Primordial black hole constraints with Hawking radiation -- a review.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Primordial black hole constraints with Hawking radiation -- a review

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Observation 252a67bc-03ae-44a2-a79a-dc1a625a8336 · outbound

This paper cites Constraints on Primordial Black Holes.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Constraints on Primordial Black Holes

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Observation eb6e5aec-28ae-41fb-9291-8629838c4059 · outbound

This paper cites CMB bounds on disk-accreting massive Primordial Black Holes.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMB bounds on disk-accreting massive Primordial Black Holes

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Observation 55e1a1e7-148d-4841-adff-af73b072fdc3 · outbound

This paper cites Particle decays during the cosmic dark ages.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Particle decays during the cosmic dark ages

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Observation 74140de8-3430-4ba1-86ae-6405fcb1b2d8 · outbound

This paper cites Detecting Dark Matter Annihilation with CMB Polarization : Signatures and Experimental Prospects.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Detecting Dark Matter Annihilation with CMB Polarization : Signatures and Experimental Prospects

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Observation 33c72a49-4019-4f78-826d-51f04bf7048f · outbound

This paper cites an unresolved cited work.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation ea942fb6-3b7a-40e3-8e2f-0b3ccd1f214a · outbound

This paper cites CMB Constraints on WIMP Annihilation: Energy Absorption During the Recombination Epoch.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMB Constraints on WIMP Annihilation: Energy Absorption During the Recombination Epoch

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Observation fdbdda15-7922-43a9-9908-ae204ac20144 · outbound

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

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Planck 2015 results. XIII. Cosmological parameters

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Observation 17919997-e500-466a-ba1f-b97dd0ecc4fd · outbound

This paper cites General Constraints on Dark Matter Decay from the Cosmic Microwave Background.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift General Constraints on Dark Matter Decay from the Cosmic Microwave Background

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Observation c602b259-2776-4e2b-ad9c-c4b56657e83a · outbound

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

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Planck 2018 results. VI. Cosmological parameters

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Observation 72963283-f6a8-40ea-beb3-22704613c542 · outbound

This paper cites Exotic energy injection with ExoCLASS: Application to the Higgs portal model and evaporating black holes.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Exotic energy injection with ExoCLASS: Application to the Higgs portal model and evaporating black holes

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Observation fb3b28a3-7a58-4ec6-b7cc-51bf61d2b2b5 · outbound

This paper cites The Cosmic Linear Anisotropy Solving System (CLASS) II: Approximation schemes.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Cosmic Linear Anisotropy Solving System (CLASS) II: Approximation schemes

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Observation 7cbe2267-7e1a-47a7-80a8-f132bfd90bfe · outbound

This paper cites The Temperature of the Cosmic Microwave Background.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Temperature of the Cosmic Microwave Background

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Observation 3bc14b21-d339-489a-bdd9-ad0d328fa97d · outbound

This paper cites an unresolved cited work.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation 76db3a64-654b-4931-8f18-f5440184eeae · outbound

This paper cites Searching for Dark Matter in the CMB: A Compact Parameterization of Energy Injection from New Physics.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Searching for Dark Matter in the CMB: A Compact Parameterization of Energy Injection from New Physics

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Observation c5b98951-65de-46f1-a1a8-13aaa4694eb0 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Energy Injection And Absorption In The Cosmic Dark Ages

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Observation 33c1991c-c37e-4f27-b178-3db77dead9ce · outbound

This paper cites The evolution of CMB spectral distortions in the early Universe.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The evolution of CMB spectral distortions in the early Universe

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Observation 569c977c-4e8b-471d-86d4-6c22536a5e78 · outbound

This paper cites Distinguishing different scenarios of early energy release with spectral distortions of the cosmic microwave background.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Distinguishing different scenarios of early energy release with spectral distortions of the cosmic microwave background

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Observation a846cc80-4f2c-48c7-9a54-457cf748b3c7 · outbound

This paper cites an unresolved cited work.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation 0d9cf344-bd98-4872-9d33-c11bca68828d · outbound

This paper cites an unresolved cited work.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation fee292a6-799d-498f-802a-454e92fc4bc1 · outbound

This paper cites CMB Signatures of Extended Reionization.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CMB Signatures of Extended Reionization

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Observation ed9613ef-8436-48ea-98d8-ec962ba1cd64 · outbound

This paper cites Christensen, R.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Christensen, R

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Observation ce89ad9c-fb62-4ec2-b7cc-47e5d07e61c0 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Cobaya: Code for Bayesian Analysis of hierarchical physical models

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Observation e783280a-5265-45b8-b1bc-4c0fb19a0f58 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift GetDist: a Python package for analysing Monte Carlo samples

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Observation 743550d5-02c9-439f-ba6c-672528db08c7 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift candl: Cosmic Microwave Background Analysis with a Differentiable Likelihood

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Observation 8c545e27-20d9-41a2-bac7-921827bd0d0f · outbound

This paper cites The Atacama Cosmology Telescope: DR6 Gravitational Lensing Map and Cosmological Parameters.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Atacama Cosmology Telescope: DR6 Gravitational Lensing Map and Cosmological Parameters

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Observation 268715bb-bb6e-4c86-b7cc-1375c0c89589 · outbound

This paper cites Planck intermediate results. XLVI. Reduction of large-scale systematic effects in HFI polarization maps and estimation of the reionization optical depth.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Planck intermediate results. XLVI. Reduction of large-scale systematic effects in HFI polarization maps and estimation of the reionization optical depth

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Observation 3a212a9c-0990-4571-a106-7a9213b9d1e2 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift New cosmological constraints on primordial black holes

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Observation 60575041-1a81-45fe-a5f1-533913eccf50 · outbound

This paper cites an unresolved cited work.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation 31642226-a48c-4f36-8e2c-7fffda769cd8 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation 9357bb11-4305-4e90-9efc-1db7f5f0ac65 · outbound

This paper cites Fireworks at Cosmic Dawn: relieving BAO-CMB tensions with the Pop III.1 Flash.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Fireworks at Cosmic Dawn: relieving BAO-CMB tensions with the Pop III.1 Flash

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Observation b64e16fd-16ba-404e-b7e0-c3a5f35836bd · outbound

This paper cites Raising the reionization optical depth with inflationary CMB features.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Raising the reionization optical depth with inflationary CMB features

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Observation a0e687c5-a962-4e61-af43-56c2c71e4a7e · outbound

This paper cites Namikawa, Resolving the negative neutrino mass with cosmic birefringence, (2025), arXiv:2506.22999 [astro- ph.CO].

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Namikawa, Resolving the negative neutrino mass with cosmic birefringence, (2025), arXiv:2506.22999 [astro- ph.CO]

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Observation b9de95f6-b7eb-4f62-9106-639e51ca213d · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Unresolved cited work

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Observation 68d6e43a-5c32-41ae-ba56-7b69be07f181 · outbound

This paper cites SRoll2: an improved mapmaking approach to reduce large-scale systematic effects in the Planck High Frequency Instrument legacy maps.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift SRoll2: an improved mapmaking approach to reduce large-scale systematic effects in the Planck High Frequency Instrument legacy maps

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Observation cdf0b41c-8b02-46b1-9838-b1e2f5025d35 · outbound

This paper cites Early time solution as an alternative to the late time evolving dark energy with DESI DR2 BAO.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Early time solution as an alternative to the late time evolving dark energy with DESI DR2 BAO

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Observation ac0d4b36-b23f-4f26-8bbb-5dc62904a727 · outbound

This paper cites Disentangling cosmic distance tensions with early and late dark energy.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Disentangling cosmic distance tensions with early and late dark energy

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Observation 6883d311-781a-443c-9a5d-8d1a2cc70e94 · outbound

This paper cites A low-redshift preference for an interacting dark energy model.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift A low-redshift preference for an interacting dark energy model

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Observation e55f62d4-35d0-40d7-a3ea-3bfcf699fc40 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Interacting Dark Energy after DESI Baryon Acoustic Oscillation measurements

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Observation cadea8bd-2642-4e35-8f01-80c313d82c1d · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift CLASS: The Cosmology Large Angular Scale Surveyor

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Observation 9897390d-478e-481c-9886-8dcd4cf26e41 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Probing Cosmic Inflation with the LiteBIRD Cosmic Microwave Background Polarization Survey

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Observation b35c1f59-d2f2-4ba3-91c4-7bb604df93f3 · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift The Simons Observatory: Science goals and forecasts

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Observation 337f5de7-2a08-4de5-aee0-65e4d7791280 · outbound

This paper cites Testing the $\mathbf{\Lambda}$CDM Cosmological Model with Forthcoming Measurements of the Cosmic Microwave Background with SPT-3G.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Testing the $\mathbf{\Lambda}$CDM Cosmological Model with Forthcoming Measurements of the Cosmic Microwave Background with SPT-3G

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Observation ffc8e5c5-1e0d-4041-ac15-e0a312834afc · outbound

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Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift A Python compressed low-$\ell$ Planck likelihood for temperature and polarization

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Pith citing papers

Observation 130972d4-99fb-4e2b-97e0-4fe0ff06a888 · inbound

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift cites this paper.

Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift Boosting the optical depth to Thomson scattering with primordial black hole evaporation at high redshift

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