Cosmic acceleration without dark energy: background tests and thermodynamic analysis

被引:41
|
作者
Lima, J. A. S. [1 ]
Graef, L. L. [2 ]
Pavon, D. [3 ]
Basilakos, Spyros [4 ]
机构
[1] Univ Sao Paulo, Dept Astron, BR-55080900 Sao Paulo, Brazil
[2] Univ Sao Paulo, Inst Fis, BR-55080900 Sao Paulo, Brazil
[3] Univ Autonoma Barcelona, Dept Fis, E-08193 Barcelona, Spain
[4] Acad Athens, Astron & Appl Math Res Ctr, Athens 11527, Greece
基金
巴西圣保罗研究基金会;
关键词
dark matter theory; alternatives to inflation; baryon acoustic oscillations; cosmological parameters from CMBR; GENERALIZED 2ND LAW; BARYON ACOUSTIC-OSCILLATIONS; DECAYING VACUUM ENERGY; EQUATION-OF-STATE; COSMOLOGICAL CONSTANT; MATTER CREATION; OLD GALAXIES; DEFLATIONARY COSMOLOGY; INFLATIONARY PARADIGM; PARTICLE CREATION;
D O I
10.1088/1475-7516/2014/10/042
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
A cosmic scenario with gravitationally induced particle creation is proposed. In this model the Universe evolves from an early to a late time de Sitter era, with the recent accelerating phase driven only by the negative creation pressure associated with the cold dark matter component. The model can be interpreted as an attempt to reduce the so-called cosmic sector (dark matter plus dark energy) and relate the two cosmic accelerating phases (early and late time de Sitter expansions). A detailed thermodynamic analysis including possible quantum corrections is also carried out. For a very wide range of the free parameters, it is found that the model presents the expected behavior of an ordinary macroscopic system in the sense that it approaches thermodynamic equilibrium in the long run (i.e., as it nears the second de Sitter phase). Moreover, an upper bound is found for the Gibbons-Hawking temperature of the primordial de Sitter phase. Finally, when confronted with the recent observational data, the current 'quasi'-de Sitter era, as predicted by the model, is seen to pass very comfortably the cosmic background tests.
引用
收藏
页数:18
相关论文
共 50 条
  • [31] New cosmic accelerating scenario without dark energy
    Lima, J. A. S.
    Basilakos, S.
    Costa, F. E. M.
    PHYSICAL REVIEW D, 2012, 86 (10)
  • [32] Viscous cosmology in new holographic dark energy model and the cosmic acceleration
    C. P. Singh
    Milan Srivastava
    The European Physical Journal C, 2018, 78
  • [33] Multi-field dark energy: Cosmic acceleration on a steep potential
    Akrami, Yashar
    Sasaki, Misao
    Solomon, Adam R.
    Vardanyan, Valeri
    PHYSICS LETTERS B, 2021, 819
  • [34] Consistent modified gravity: dark energy, acceleration and the absence of cosmic doomsday
    Abdalla, MCB
    Nojiri, S
    Odintsov, SD
    CLASSICAL AND QUANTUM GRAVITY, 2005, 22 (05) : L35 - L42
  • [35] Dark energy dominance and cosmic acceleration in first-order formalism
    Allemandi, G
    Borowiec, A
    Francaviglia, M
    Odintsov, SD
    PHYSICAL REVIEW D, 2005, 72 (06):
  • [36] Viscous cosmology in new holographic dark energy model and the cosmic acceleration
    Singh, C. P.
    Srivastava, Milan
    EUROPEAN PHYSICAL JOURNAL C, 2018, 78 (03):
  • [37] Energy Definition and Dark Energy: A Thermodynamic Analysis
    Moradpour, H.
    Morais Graca, J. P.
    Lobo, I. P.
    Salako, I. G.
    ADVANCES IN HIGH ENERGY PHYSICS, 2018, 2018
  • [38] Probing dark energy with supernovae: Exploiting complementarity with the cosmic microwave background
    Frieman, JA
    Huterer, D
    Linder, EV
    Turner, MS
    PHYSICAL REVIEW D, 2003, 67 (08)
  • [39] Presence of dark energy and dark matter: does cosmic acceleration signifies a weak gravitational collapse?
    Rudra, Prabir
    Biswas, Ritabrata
    Debnath, Ujjal
    ASTROPHYSICS AND SPACE SCIENCE, 2012, 342 (02) : 557 - 574
  • [40] Large-scale cosmic microwave background anisotropies and dark energy
    Weller, J
    Lewis, AM
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2003, 346 (03) : 987 - 993