Generalized emergent dark energy in the late-time Universe

被引:0
|
作者
Torres, Jose Agustin Lozano [1 ,2 ]
机构
[1] Univ Nacl Autonoma Mexico, Inst Phys, Circuito Invest Cient, Ciudad Univ, Cdmx 04510, Mexico
[2] Univ Nacl Autonoma Mexico, Inst Astron, Circuito Exterior Area Invest Cient, Ciudad Univ, Cdmx 04510, Mexico
关键词
methods: numerical; cosmology: cosmological parameters; cosmology: dark energy; OSCILLATION SPECTROSCOPIC SURVEY; BARYON ACOUSTIC-OSCILLATIONS; HUBBLE-SPACE-TELESCOPE; COSMIC CHRONOMETERS; LOCAL VALUE; GALAXY SAMPLE; CONSTANT; DISTANCE; CONSTRAINTS; PARAMETER;
D O I
10.1093/mnras/stae1920
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We investigate a new type of dark energy model called the generalized emergent dark energy (GEDE) model which encodes either phenomenologically emergent dark energy that has no effective presence in the early times and emerges strongly in late times or the standard model of cosmology Lambda cold dark matter (Lambda CDM). We test this new brand dark energy model and compare it with the standard model of cosmology Lambda CDM using the final baryon acoustic oscillation (BAO) uncorrelated measurements in the effective redshift range 0.106 <= z <= 2.33 of different surveys after two decades of dedicated spectroscopic observation combined with the compressed form of the Pantheon sample of Type Ia supernovae, the observational H(z) measurements based on differential age method, and the recent Hubble constant value measurement from the Hubble Space Telescope and the SH0ES Team in 2022 as an additional Gaussian prior. In the GEDE model fit yields the cosmological parameters Omega(m )= 0.2713 +/- 0.0142 and Omega(Lambda )= 0.7245 +/- 0.0126 for BAO + R22. Combining BAO with the observational H(z) measurements based on the differential age method, and the Pantheon Type Ia supernova, the Hubble constant yields 69.92 +/- 1.17 km s(-1) Mpc(-1 )and the sound horizon gives 145.97 +/- 2.44 Mpc. We perform the Akaike information criteria, Bayesian information criterion, and Bayesian evidence to compare the GEDE and Lambda CDM models and see that Lambda CDM has a better performance without the inclusion of early-time observations as the cosmic microwave background.
引用
收藏
页码:1865 / 1873
页数:9
相关论文
共 50 条
  • [41] Covariant generalized holographic dark energy and accelerating universe
    Nojiri, Shin'ichi
    Odintsov, S. D.
    EUROPEAN PHYSICAL JOURNAL C, 2017, 77 (08):
  • [42] Covariant generalized holographic dark energy and accelerating universe
    Shin’ichi Nojiri
    S. D. Odintsov
    The European Physical Journal C, 2017, 77
  • [43] Chameleonic Generalized Brans–Dicke model and late-time acceleration
    H. Farajollahi
    M. Farhoudi
    A. Salehi
    H. Shojaie
    Astrophysics and Space Science, 2012, 337 : 415 - 423
  • [44] Emergent Universe from a composition of matter, exotic matter and dark energy
    Paul, B. C.
    Ghose, S.
    Thakur, P.
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2011, 413 (01) : 686 - 690
  • [45] Investigating late-time dark energy and massive neutrinos in light of DESI Y1 BAO
    Reboucas, Joao
    de Souza, Diogo H. F.
    Zhong, Kunhao
    Miranda, Vivian
    Rosenfeld, Rogerio
    JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS, 2025, (02): : 1 - 44
  • [46] Late-time constraints on interacting dark energy: Analysis independent of H0, rd, and MB
    Benisty, David
    Pan, Supriya
    Staicova, Denitsa
    Di Valentino, Eleonora
    Nunes, Rafael C.
    ASTRONOMY & ASTROPHYSICS, 2024, 688
  • [47] Dynamical dark energy from spacetime-symmetry breaking - Late-time behaviour and phantom crossing
    Nilsson, Nils A.
    PHYSICS OF THE DARK UNIVERSE, 2024, 45
  • [48] Emergent dark universe and the swampland criteria
    Cai, Rong-Gen
    Khimphun, Sunly
    Lee, Bum-Hoon
    Sun, Sichun
    Tumurtushaa, Gansukh
    Zhang, Yun-Long
    PHYSICS OF THE DARK UNIVERSE, 2019, 26
  • [49] Late-time dark matter oscillations and the core-cusp problem
    James M. Cline
    Guillermo Gambini
    Samuel D. McDermott
    Matteo Puel
    Journal of High Energy Physics, 2021
  • [50] Emergent Universe as an interaction in the dark sector
    Marachlian, Emiliano
    Sanchez G, I. E.
    Santillan, Osvaldo P.
    MODERN PHYSICS LETTERS A, 2017, 32 (28)