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dc.date.accessioned2022-02-02T18:48:57Z
dc.date.available2022-02-02T18:48:57Z
dc.date.created2022-01-07T14:48:56Z
dc.date.issued2021
dc.identifier.citationChen, Angela Huterer, Dragan Lee, S. Ferté, Agnès Weaverdyck, Noah Alves, O. Leonard, C. D. MacCrann, Niall Raveri, Marco Porredon, Anna Di Valentino, Eleonora Muir, J. Lemos, P. Liddle, A. R. Blazek, J. Campos, A. Cawthon, R. Choi, A. Dodelson, Scott Elvin-Poole, J. Gruen, D. Ross, Ashley J. Secco, Lucas Frozza Sevilla-Noarbe, Ignacio Sheldon, E. Troxel, M. A. Zuntz, Joseph Abbott, T. M. C. Aguena, Michel Allam, S. Annis, J. Avila, S. Bertin, E. Bhargava, S. Bridle, Sarah L. Brooks, D. Carnero Rosell, Aurelio Carrasco Kind, Matias Carretero, J. Costanzi, M. Crocce, M. da Costa, L. N. Pereira, Maria Elidaiana da Silva Davis, Tamara M. Doel, P. Eifler, T. F. Ferrero, Ismael Fosalba, P. Frieman, J. García-Bellido, Juan Gaztanaga, E. Gerdes, David W. Gruendl, Robert A. Gschwend, J. Gutierrez, G. Hinton, S. R. Hollowood, Devon L. Honscheid, K. Hoyle, B. James, D. J. Jarvis, M. Kuehn, K. Lahav, Ofer Maia, M. A. G. Marshall, J. L. Menanteau, F. Miquel, R. Morgan, R. Palmese, A. Paz-Chinchón, Francisco Plazas, Andrés A. Roodman, A. Sanchez, E. Scarpine, V. Schubnell, M. Serrano, S. Smith, M. Suchyta, E. Tarle, G. Thomas, D. To, Chun-Hao Varga, T. N. Weller, Jochen Wilkinson, R. D. . Constraints on dark matter to dark radiation conversion in the late universe with DES-Y1 and external data. Physical Review D. 2021, 103(12)
dc.identifier.urihttp://hdl.handle.net/10852/90449
dc.description.abstractWe study a phenomenological class of models where dark matter converts to dark radiation in the low redshift epoch. This class of models, dubbed DMDR, characterizes the evolution of comoving dark-matter density with two extra parameters, and may be able to help alleviate the observed discrepancies between early and late-time probes of the Universe. We investigate how the conversion affects key cosmological observables such as the cosmic microwave background (CMB) temperature and matter power spectra. Combining 3x2pt data from Year 1 of the Dark Energy Survey, Planck-2018 CMB temperature and polarization data, supernovae (SN) Type Ia data from Pantheon, and baryon acoustic oscillation (BAO) data from BOSS DR12, MGS and 6dFGS, we place new constraints on the amount of dark matter that has converted to dark radiation and the rate of this conversion. The fraction of the dark matter that has converted since the beginning of the Universe in units of the current amount of dark matter, ζ, is constrained at 68% confidence level to be <0.32 for DES-Y1 3x2pt data, <0.030 for CMB+SN+BAO data, and <0.037 for the combined dataset. The probability that the DES and CMB+SN+BAO datasets are concordant increases from 4% for the ΛCDM model to 8% (less tension) for DMDR. The tension in S8=σ8√Ωm/0.3 between DES-Y1 3x2pt and CMB+SN+BAO is slightly reduced from 2.3σ to 1.9σ. We find no reduction in the Hubble tension when the combined data is compared to distance-ladder measurements in the DMDR model. The maximum-posterior goodness-of-fit statistics of DMDR and ΛCDM model are comparable, indicating no preference for the DMDR cosmology over ΛCDM.
dc.languageEN
dc.publisherAmerican Physical Society
dc.titleConstraints on dark matter to dark radiation conversion in the late universe with DES-Y1 and external data
dc.typeJournal article
dc.creator.authorChen, Angela
dc.creator.authorHuterer, Dragan
dc.creator.authorLee, S.
dc.creator.authorFerté, Agnès
dc.creator.authorWeaverdyck, Noah
dc.creator.authorAlves, O.
dc.creator.authorLeonard, C. D.
dc.creator.authorMacCrann, Niall
dc.creator.authorRaveri, Marco
dc.creator.authorPorredon, Anna
dc.creator.authorDi Valentino, Eleonora
dc.creator.authorMuir, J.
dc.creator.authorLemos, P.
dc.creator.authorLiddle, A. R.
dc.creator.authorBlazek, J.
dc.creator.authorCampos, A.
dc.creator.authorCawthon, R.
dc.creator.authorChoi, A.
dc.creator.authorDodelson, Scott
dc.creator.authorElvin-Poole, J.
dc.creator.authorGruen, D.
dc.creator.authorRoss, Ashley J.
dc.creator.authorSecco, Lucas Frozza
dc.creator.authorSevilla-Noarbe, Ignacio
dc.creator.authorSheldon, E.
dc.creator.authorTroxel, M. A.
dc.creator.authorZuntz, Joseph
dc.creator.authorAbbott, T. M. C.
dc.creator.authorAguena, Michel
dc.creator.authorAllam, S.
dc.creator.authorAnnis, J.
dc.creator.authorAvila, S.
dc.creator.authorBertin, E.
dc.creator.authorBhargava, S.
dc.creator.authorBridle, Sarah L.
dc.creator.authorBrooks, D.
dc.creator.authorCarnero Rosell, Aurelio
dc.creator.authorCarrasco Kind, Matias
dc.creator.authorCarretero, J.
dc.creator.authorCostanzi, M.
dc.creator.authorCrocce, M.
dc.creator.authorda Costa, L. N.
dc.creator.authorPereira, Maria Elidaiana da Silva
dc.creator.authorDavis, Tamara M.
dc.creator.authorDoel, P.
dc.creator.authorEifler, T. F.
dc.creator.authorFerrero, Ismael
dc.creator.authorFosalba, P.
dc.creator.authorFrieman, J.
dc.creator.authorGarcía-Bellido, Juan
dc.creator.authorGaztanaga, E.
dc.creator.authorGerdes, David W.
dc.creator.authorGruendl, Robert A.
dc.creator.authorGschwend, J.
dc.creator.authorGutierrez, G.
dc.creator.authorHinton, S. R.
dc.creator.authorHollowood, Devon L.
dc.creator.authorHonscheid, K.
dc.creator.authorHoyle, B.
dc.creator.authorJames, D. J.
dc.creator.authorJarvis, M.
dc.creator.authorKuehn, K.
dc.creator.authorLahav, Ofer
dc.creator.authorMaia, M. A. G.
dc.creator.authorMarshall, J. L.
dc.creator.authorMenanteau, F.
dc.creator.authorMiquel, R.
dc.creator.authorMorgan, R.
dc.creator.authorPalmese, A.
dc.creator.authorPaz-Chinchón, Francisco
dc.creator.authorPlazas, Andrés A.
dc.creator.authorRoodman, A.
dc.creator.authorSanchez, E.
dc.creator.authorScarpine, V.
dc.creator.authorSchubnell, M.
dc.creator.authorSerrano, S.
dc.creator.authorSmith, M.
dc.creator.authorSuchyta, E.
dc.creator.authorTarle, G.
dc.creator.authorThomas, D.
dc.creator.authorTo, Chun-Hao
dc.creator.authorVarga, T. N.
dc.creator.authorWeller, Jochen
dc.creator.authorWilkinson, R. D.
cristin.unitcode185,15,3,0
cristin.unitnameInstitutt for teoretisk astrofysikk
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode1
dc.identifier.cristin1976662
dc.identifier.bibliographiccitationinfo:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Physical Review D&rft.volume=103&rft.spage=&rft.date=2021
dc.identifier.jtitlePhysical Review D
dc.identifier.volume103
dc.identifier.issue12
dc.identifier.pagecount25
dc.identifier.doihttps://doi.org/10.1103/PhysRevD.103.123528
dc.identifier.urnURN:NBN:no-93036
dc.subject.nviVDP::Astrofysikk, astronomi: 438
dc.type.documentTidsskriftartikkel
dc.type.peerreviewedPeer reviewed
dc.source.issn2470-0010
dc.identifier.fulltextFulltext https://www.duo.uio.no/bitstream/handle/10852/90449/1/PhysRevD.103.123528.pdf
dc.type.versionPublishedVersion
cristin.articleid123528
dc.relation.projectNFR/287772


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