...
首页> 外文期刊>European Physical Journal Plus >Temporally varying universal gravitational 'constant' and speed of light in energy momentum squared gravity
【24h】

Temporally varying universal gravitational 'constant' and speed of light in energy momentum squared gravity

机译:在时间上变化的普遍引力“常数”和能量动量平方重力的光速

获取原文
获取原文并翻译 | 示例

摘要

Energy momentum squared gravity (EMSG) (Roshan and Shojai in Phys Rev D 94:044002, 2016) is a cosmological model where the scale factor is non vanishing at all times and hence does not favor big-bang cosmology. However, the profile of density in the radiation-dominated universe shows that EMSG supports inflationary cosmology. Inflationary cosmological models are successful in providing convincing answers to major cosmological issues like horizon problem, flatness problem, and small value of cosmological constant, but hitherto no model of inflation has been observationally confirmed. Owing to this, varying speed of light (VSL) were introduced which are a class of cosmological models which disfavor inflation and propose an alternative route to solve these cosmological issues by just allowing the speed of light (and Newtonian Gravitational constant) to vary. VSL theories were motivated to address the shortcomings of inflation, but do not address the shortcomings related to the initial big-bang singularity. In this spirit, we present here a novel cosmological model which is free from both the "initial big bang singularity" and "inflation" by incorporating a mutually varying speed of light c(t) and Newtonian gravitational constant G(t) in the framework of EMSG. We report that in EMSG, for a dust universe (omega =0), cosmological models for a time-varying c(t) and G(t) and constant c and G are indistinguishable, whereas for a radiation-dominated universe (omega =1/3), a mutually varying c(t) and G(t) provides an exiting alternative to inflationary cosmology which is also free from the initial big-bang singularity. We further report that for an ansatz of scale factor representing a bouncing cosmological model, the VSL theory can be applied to a quadratic T gravity model to get rid of "inflation" and "big bang singularity" and concurrently solve the above-mentioned cosmological enigmas.
机译:能量动量平方重力(EMSG)(Roshan和Shojai在Phy Rev D 94:044002,2016)是一个宇宙学模型,其中规模因子始终不消失,因此不赞成大熊宇宙学。然而,辐射统治宇宙中密度的曲线表明EMSG支持通胀宇宙。通胀宇宙模型成功地为各大宇宙问题提供了令人信服的答案,如地平线问题,平坦问题,宇宙常数的少量价值,但迄今为止没有展示通货膨胀的模型。由于这一点,介绍了不同的光速(VSL),这是一类宇宙学模型,这些模型不适应通货膨胀,并提出通过仅仅允许光(和牛顿引力常数)的速度来解决这些宇宙学问题的替代路线。 VSL理论有动力解决通货膨胀率的缺点,但不解决与最初的大爆炸奇点相关的缺点。在这种精神下,我们在这里介绍一种新的宇宙学模型,它通过在框架中包含相互不同的光C(t)和牛顿引力常数g(t)的相互变化的速度而不是“初始大爆炸奇点”和“通胀” EMSG。我们在EMSG中报告,对于灰尘宇宙(OMEGA = 0),用于时变C(t)和g(t)和常数C和g的宇宙学模型是难以区分的,而对于辐射统治宇宙(OMEGA = 1/3),相互变化的C(t)和g(t)提供了对膨胀宇宙学的退出替代方案,其也没有初始的大爆炸奇异性。我们进一步报告,对于代表弹跳宇宙学模型的规模因子的ansatz,VSL理论可以应用于二次T重力模型,以摆脱“通胀”和“大爆炸奇点”并同时解决上述宇宙学谜。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号