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DESI 2024 VI: cosmological constraints from the measurements of baryon acoustic oscillations

Journal of Cosmology and Astroparticle Physics · 2025 · Vol. 2025(02) · pp. 021–021
A. G. AdameJosé Edgar Madriz AguilarS. AhlenShadab AlamD. M. AlexanderM. A. ÁlvarezO. AlvesAbhijeet AnandU. AndradeE. ArmengaudS. ÀvilaAlejandro AvilésH. AwanBenedict Bahr-KalusS. BaileyC. BaltayA. BaultJ. BeheraS. BenZviApurba BeraFlorian BeutlerDavide BianchiCullen H. BlakeRobert BlumS. BriedenA. BrodzellerD. BrooksE. Buckley‐GeerE. BurtinR. CalderónR. CanningA. Carnero RosellR. CereskaiteJorge L. Cervantes–CotaSolène ChabanierE. ChaussidonJ. Chaves-MonteroShi-Fan ChenX. ChenT. ClaybaughShaun ColeAndrei CuceuT. M. DavisKyle DawsonAxel de la MacorraA. de MattiaN. DeiossoA. DeyBiprateep DeyZ. DingP. DoelJ. EdelsteinSarah EftekharzadehDaniel J. EisensteinA. ElliottP. FagreliusK. FanningS. FerraroJ. ErezaN. FindlayB. FlaugherAndreu Font-RiberaD. Forero-SánchezJ. E. Forero-RomeroCarlos S. FrenkC. García-QuinteroE. GaztañagaHéctor Gil-MarínSatya Gontcho A GontchoA. X. Gonzalez-MoralesVioleta González-PérezC. GordonD. GreenD. GruenRafaela GsponerG. GutierrezJ. GuyBoryana HadzhiyskaChangHoon HahnM. HanifH. K. Herrera-AlcantarK. HonscheidCullan HowlettD HutererVid IršičMustapha IshakS. JuneauNaim Göksel KaraçaylıR. KehoeS. KentD. KirkbyS. W. AllenAlex KrolewskiYing‐Cheng LaiTing-Wen LanM. LandriauDustin LangJ. LaskerJ.M. Le GoffL. Le GuillouA. LeauthaudM. E. LeviTing S. LiE. LinderK. LodhaC. MagnevilleMarc ManeraDaniel MargalaPaul MartiniM. MausPatrick McDonaldL. Medina-VarelaAaron MeisnerJ. Mena-FernándezR. MiquelJ. MoonS. MooreJohn MoustakasEva-Maria MuellerA. Muñoz-GutiérrezA.D. MyersS. NadathurL. NapolitanoRichard NeveuxJ.A. NewmanJeffrey A. NewmanJundan NieG. NizH.E. NoriegaNikhil PadmanabhanE. PaillasN. Palanque‐DelabrouilleJian PanS. PenmetsaW.J. PercivalW. J. PercivalMichele PinonC. PoppettA. PorredonF. PradaIgnasi Pérez-RàfolsIgnasi Pérez-RàfolsD. RabinowitzA. RaichoorC. Ramírez-PérezS. Ramírez-SolanoM. RashkovetskyiC. RavouxMehdi RezaieJ. RichA. RocherConstance M. RockosiN.A. RoeA. Rosado-MarinA.J. RossGraziano RossiRossana RuggeriV. Ruhlmann-KleiderLado SamushiaE. SánchezC. SaulderE.F. SchlaflyDavid J. SchlegelM. SchubnellHee‐Jong SeoArman ShafielooR. M. SharplesJ. SilberA. SlosarA. G. SmithD. SprayberryT. TanG. TarléPeter L. TaylorS. TrusovL.A. Ureña-LópezR. VaisakhD. ValcinF. ValdésM. Vargas-MagañaLicia VerdeMichael WaltherB. WangM.S. WangM. S. WangN. WeaverdyckR.H. WechslerRisa H. WechslerMartin WhiteJiaxi YuY. YuSihan YuanChristophe YècheE.A. ZaborowskiPauline ZarroukHanyu ZhangCheng ZhaoRuiyang ZhaoRongpu ZhouTing ZhuangHu Zou

Abstract

Abstract We present cosmological results from the measurement of baryon acoustic oscillations (BAO) in galaxy, quasar and Lyman- α forest tracers from the first year of observations from the Dark Energy Spectroscopic Instrument (DESI), to be released in the DESI Data Release 1. DESI BAO provide robust measurements of the transverse comoving distance and Hubble rate, or their combination, relative to the sound horizon, in seven redshift bins from over 6 million extragalactic objects in the redshift range 0.1 < z < 4.2. To mitigate confirmation bias, a blind analysis was implemented to measure the BAO scales. DESI BAO data alone are consistent with the standard flat ΛCDM cosmological model with a matter density Ω m =0.295±0.015. Paired with a baryon density prior from Big Bang Nucleosynthesis and the robustly measured acoustic angular scale from the cosmic microwave background (CMB), DESI requires H 0 =(68.52±0.62) km s -1 Mpc -1 . In conjunction with CMB anisotropies from Planck and CMB lensing data from Planck and ACT, we find Ω m =0.307± 0.005 and H 0 =(67.97±0.38) km s -1 Mpc -1 . Extending the baseline model with a constant dark energy equation of state parameter w , DESI BAO alone require w =-0.99 +0.15 -0.13 . In models with a time-varying dark energy equation of state parametrised by w 0 and w a , combinations of DESI with CMB or with type Ia supernovae (SN Ia) individually prefer w 0 > -1 and w a < 0. This preference is 2.6 σ for the DESI+CMB combination, and persists or grows when SN Ia are added in, giving results discrepant with the ΛCDM model at the 2.5 σ , 3.5 σ or 3.9 σ levels for the addition of the Pantheon+, Union3, or DES-SN5YR supernova datasets respectively. For the flat ΛCDM model with the sum of neutrino mass ∑ m ν free, combining the DESI and CMB data yields an upper limit ∑ m ν < 0.072 (0.113) eV at 95% confidence for a ∑ m ν > 0 (∑ m ν > 0.059) eV prior. These neutrino-mass constraints are substantially relaxed if the background dynamics are allowed to deviate from flat ΛCDM.

Cosmology and Gravitation TheoriesGalaxies: Formation, Evolution, PhenomenaRadio Astronomy Observations and TechnologyPhysicsCosmic microwave backgroundDark energyBaryon acoustic oscillationsHubble's lawAstrophysicsRedshiftPlanckEquation of stateBaryon

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Gordon and Betty Moore Foundation
  • Ministerio de Ciencia e Innovación
  • Universitat de Barcelona
  • Commissariat à l'Énergie Atomique et aux Énergies Alternatives
  • Instituto de Astrofísica de Andalucía
  • Office of Science
  • Science and Technology Facilities Council
  • Institut de Ciències del Cosmos
  • Division of Astronomical Sciences
  • High Energy Physics
  • Integrated Electronics Engineering Center, Binghamton University
  • Fermilab
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