학술논문

Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: Cosmological implications from two decades of spectroscopic surveys at the Apache Point Observatory
Document Type
article
Author
Alam, ShadabAubert, MarieAvila, SantiagoBalland, ChristopheBautista, Julian EBershady, Matthew ABizyaev, DmitryBlanton, Michael RBolton, Adam SBovy, JoBrinkmann, JonathanBrownstein, Joel RBurtin, EtienneChabanier, SolèneChapman, Michael JChoi, Peter DoohyunChuang, Chia-HsunComparat, JohanCousinou, Marie-ClaudeCuceu, AndreiDawson, Kyle Sde la Torre, Sylvainde Mattia, Arnaudde Sainte Agathe, Victoriadu Mas des Bourboux, HélionEscoffier, StephanieEtourneau, ThomasFarr, JamesFont-Ribera, AndreuFrinchaboy, Peter MFromenteau, SebastienGil-Marín, HéctorLe Goff, Jean-MarcGonzalez-Morales, Alma XGonzalez-Perez, VioletaGrabowski, KathleenGuy, JulienHawken, Adam JHou, JiaminKong, HuiParker, JamesKlaene, MarkKneib, Jean-PaulLin, SichengLong, DanielLyke, Brad Wde la Macorra, AxelMartini, PaulMasters, KarenMohammad, Faizan GMoon, JeonginMueller, Eva-MariaMuñoz-Gutiérrez, AndreaMyers, Adam DNadathur, SeshadriNeveux, RichardNewman, Jeffrey ANoterdaeme, PasquierOravetz, AudreyOravetz, DanielPalanque-Delabrouille, NathaliePan, KaikePaviot, RomainPercival, Will JPérez-Ràfols, IgnasiPetitjean, PatrickPieri, Matthew MPrakash, AbhishekRaichoor, AnandRavoux, CorentinRezaie, MehdiRich, JamesRoss, Ashley JRossi, GrazianoRuggeri, RossanaRuhlmann-Kleider, VaninaSánchez, Ariel GSánchez, F JavierSánchez-Gallego, José RSayres, ConorSchneider, Donald PSeo, Hee-JongShafieloo, ArmanSlosar, AnžeSmith, AlexStermer, JuliannaTamone, AmelieTinker, Jeremy LTojeiro, RitaVargas-Magaña, MarianaVariu, AndreiWang, YutingWeaver, Benjamin AWeijmans, Anne-MarieYèche, ChristopheZarrouk, PaulineZhao, ChengZhao, Gong-BoZheng, Zheng
Source
Physical Review D. 103(8)
Subject
Particle and High Energy Physics
Physical Sciences
astro-ph.CO
Language
Abstract
We present the cosmological implications from final measurements of clustering using galaxies, quasars, and Lyα forests from the completed Sloan Digital Sky Survey (SDSS) lineage of experiments in large-scale structure. These experiments, composed of data from SDSS, SDSS-II, BOSS, and eBOSS, offer independent measurements of baryon acoustic oscillation (BAO) measurements of angular-diameter distances and Hubble distances relative to the sound horizon, rd, from eight different samples and six measurements of the growth rate parameter, fσ8, from redshift-space distortions (RSD). This composite sample is the most constraining of its kind and allows us to perform a comprehensive assessment of the cosmological model after two decades of dedicated spectroscopic observation. We show that the BAO data alone are able to rule out dark-energy-free models at more than eight standard deviations in an extension to the flat, ΛCDM model that allows for curvature. When combined with Planck Cosmic Microwave Background (CMB) measurements of temperature and polarization, under the same model, the BAO data provide nearly an order of magnitude improvement on curvature constraints relative to primary CMB constraints alone. Independent of distance measurements, the SDSS RSD data complement weak lensing measurements from the Dark Energy Survey (DES) in demonstrating a preference for a flat ΛCDM cosmological model when combined with Planck measurements. The combined BAO and RSD measurements indicate σ8=0.85±0.03, implying a growth rate that is consistent with predictions from Planck temperature and polarization data and with General Relativity. When combining the results of SDSS BAO and RSD, Planck, Pantheon Type Ia supernovae (SNe Ia), and DES weak lensing and clustering measurements, all multiple-parameter extensions remain consistent with a ΛCDM model. Regardless of cosmological model, the precision on each of the three parameters, ωΛ, H0, and σ8, remains at roughly 1%, showing changes of less than 0.6% in the central values between models. In a model that allows for free curvature and a time-evolving equation of state for dark energy, the combined samples produce a constraint ωk=-0.0022±0.0022. The dark energy constraints lead to w0=-0.909±0.081 and wa=-0.49-0.30+0.35, corresponding to an equation of state of wp=-1.018±0.032 at a pivot redshift zp=0.29 and a Dark Energy Task Force Figure of Merit of 94. The inverse distance ladder measurement under this model yields H0=68.18±0.79 km s-1 Mpc-1, remaining in tension with several direct determination methods; the BAO data allow Hubble constant estimates that are robust against the assumption of the cosmological model. In addition, the BAO data allow estimates of H0 that are independent of the CMB data, with similar central values and precision under a ΛCDM model. Our most constraining combination of data gives the upper limit on the sum of neutrino masses at mν