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The cosmological analysis of the SDSS/BOSS data from the Effective Field Theory of Large-Scale Structure

Guido D’AmicoDipartimento di SMFI dell'Università di Parma and INFN, Gruppo Collegato di Parma, Parco Area delle Scienze, 7/A, 43124 Parma, ItalyJérôme GleyzesJPL and Astronomy Department, California Institute of Technology, Pasadena, CA 91109, U.S.ANickolas KokronKIPAC, SLAC and Stanford University, Menlo Park, CA 94025, U.S.AK. MarkovičInstitute of Cosmology & Gravitation, University of Portsmouth, Burnaby Road, Portsmouth, PO1 3FX, U.KLeonardo SenatoreKIPAC, SLAC and Stanford University, Menlo Park, CA 94025, U.S.APierre ZhangCAS Key Laboratory for Research in Galaxies and Cosmology, University of Science and Technology of China, Hefei, Anhui 230026, ChinaFlorian BeutlerInstitute of Cosmology & Gravitation, University of Portsmouth, Burnaby Road, Portsmouth, PO1 3FX, U.KHéctor Gil-MarínICC, University of Barcelona, IEEC-UB, Martí i Franquès, 1, E08028 Barcelona, Spain
2020en
ABI

Аннотация

The Effective Field Theory of Large-Scale Structure is a formalism that allows us to predict the clustering of Cosmological Large-Scale Structure in the mildly non-linear regime in an accurate and reliable way. In this paper, after validating our technique against several sets of numerical simulations, we perform the analysis for the cosmological parameters of the DR12 BOSS data. We assume <NOBR>Λ</NOBR>CDM, a fixed value of the baryon/dark-matter ratio, <NOBR>Ω<SUB><I>b</I></SUB>/Ω<SUB><I>c</I></SUB></NOBR>, and of the tilt of the primordial power spectrum, <NOBR><I>n</I><SUB><I>s</I></SUB></NOBR>, and no significant input from numerical simulations. By using the one-loop power spectrum multipoles, we measure the primordial amplitude of the power spectrum, <NOBR><I>A</I><SUB><I>s</I></SUB></NOBR>, the abundance of matter, <NOBR>Ω<SUB><I>m</I></SUB></NOBR>, and the Hubble parameter, <NOBR><I>H</I><SUB>0</SUB></NOBR>, {to about <NOBR>13%</NOBR>, <NOBR>3.2%</NOBR> and <NOBR>3.2%</NOBR> respectively, obtaining <NOBR> ln (10<SUP>10</SUP><I>A</I><SUB><I>s</I></SUB>)=2.72± 0.13</NOBR>, <NOBR>0Ω<SUB><I>m</I></SUB>=0.309± 0.01</NOBR>, <NOBR><I>H</I><SUB>0</SUB>=68.5± 2.2</NOBR> km/(s Mpc) at 68% confidence level. If we then add a CMB prior on the sound horizon, the error bar on <NOBR><I>H</I><SUB>0</SUB></NOBR> is reduced to <NOBR>1.6%</NOBR>.} These results are a substantial qualitative and quantitative improvement with respect to former analyses, and suggest that the EFTofLSS is a powerful instrument to extract cosmological information from Large-Scale Structure.

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