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首页> 外文期刊>Physical review, D >Cosmological implications of scale-independent energy-momentum squared gravity: Pseudo nonminimal interactions in dark matter and relativistic relics
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Cosmological implications of scale-independent energy-momentum squared gravity: Pseudo nonminimal interactions in dark matter and relativistic relics

机译:规模独立的能量动量平方重力的宇宙学影响:伪非初始相互作用在暗物质和相对论文物中

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摘要

In this paper, we introduce a scale-independent energy-momentum squared gravity (EMSG) that allows different gravitational couplings for different types of sources, which may lead to scenarios with many interesting applications/implications in cosmology. In the present study, to begin with, we study a modification of the Λ cold dark matter (ΛCDM) model, where photons and baryons couple to the spacetime as in general relativity, while the cold dark matter and relativistic relics (neutrinos and any other relativistic relics) couple to the spacetime in accordance with EMSG. This scenario induces pseudo nonminimal interactions on these components, leading to modification at both the background and perturbative levels. A consequence of this scenario is that the dimensionless free parameter of the theory may induce direct changes on the effective number of the relativistic species, without the need to introduce new extra species. In order to quantify the observational consequences of the cosmological scenario, we use the cosmic microwave background Planck data (temperature, polarization, and lensing power spectrum) and baryonic acoustic oscillations data. We find that the free model parameter is too small to induce statistically significant corrections on the ΛCDM model due to EMSG. We deduce that the model presented here is quite rich with promising cosmological applications/implications that deserve further investigations.
机译:在本文中,我们介绍了一个独立的能量 - 动量平方重力(EMSG),允许不同类型的来源的不同重力耦合,这可能导致具有许多有趣的应用程序/宇宙学的影响的情景。在本研究中,首先,我们研究了λ冷暗物质(λcdm)模型的修改,其中光子和重子耦合到空间的一般相对论,而冷暗物质和相对论遗物(Neutrinos和任何其他相对论文物)根据EMSG耦合到时空。这种情况引起了这些组件上的伪非体内相互作用,导致在背景和扰动水平上进行修改。这种情况的结果是理论的无量纲自由参数可能会引起对相关性物种的有效数量的直接变化,而无需引入新的额外物种。为了量化宇宙学情景的观察后果,我们使用宇宙微波背景普朗克数据(温度,极化和镜头功率谱)和缩放声学振荡数据。我们发现自由型号参数太小,无法引起由于EMSG引起的λcdm模型上的统计上显着的校正。我们推断出这里呈现的模型非常丰富,具有有希望的宇宙应用/影响,值得进一步调查。

著录项

  • 来源
    《Physical review, D》 |2018年第1期|共12页
  • 作者单位

    Department of Physics ?stanbul Technical University Maslak 34469 ?stanbul Turkey;

    Department of Physics ?stanbul Technical University Maslak 34469 ?stanbul Turkey;

    Department of Mathematics BITS Pilani Pilani Campus Rajasthan-333031 India;

    Departamento de Física Universidade Federal de Juiz de Fora 36036-330 Juiz de Fora Minas Gerais Brazil;

    Centre for Theoretical Physics Jamia Millia Islamia New Delhi India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

    gravitational; spacetime; cosmological;

    机译:引力;时空;宇宙学;

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