...
首页> 外文期刊>General Relativity and Gravitation: GRG Journal >Testing R_h = ct cosmology from fundamental considerations: Is the Friedmann universe intrinsically flat
【24h】

Testing R_h = ct cosmology from fundamental considerations: Is the Friedmann universe intrinsically flat

机译:从基本考虑检验R_h = ct宇宙学:弗里德曼宇宙本质上是平坦的吗

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Recently Melia and Shevchuk (Mon Not R Astron Soc 419:2579,2012) (MS) have proposed the so-called R_h = ct cosmology where the "Gravitational Horizon" of the universe R_h is equal to the distance travelled by light since "Big Bang". Here we would like to see whether the basic claim R_h = ct is correct or not because MShave not given any cogent derivation for the same. Essentially we will compare the twin expressions for the Einstein energy momentum complex (EMC) of the Friedmann universe obtained by using an appropriate superpotential and also by a direct method. To enable a meaningful comparison of the twin expressions, both are computed by using the same quasi-Cartesian coordinates. We however do not claim that Einstein EMC is superior to many other routes of defining EM of a self-gravitating system. In fact, for static isolated spherical syatems, the idea of a coordinate independent field energy of Lynden-Bell and Katz (Mon Not R Astron Soc 213:21, 1985) might be quite physically significant. Yet, here, we use Einstein EMC because (i) our system is non-static and not isolated one (ii) our primary aim is not find any absolute value of EM, and, finally, (iii) only Einstein pseudo-tensor offers equivalent twin expressions for EMwhich one can be equated irrespective of any physical significance. Following such comparison of equivalent twin expressions of Einstein energy, we find an exact proof as to why Friedmann universe must be spatially flat even though, mathematically one can conceive of curved spaces in any dimension. Additionally, it follows that, apparently, the scale factor S(t) ∝ t as insisted by R_h = ct proposition. Nonetheless, because of close similarity of this form, S(t) ∝ t, with the (vacuum)Milnemetric, and also because of implied unphysical equation of state, R_h = ct cosmology is unlikely to represent the physical universe.
机译:最近,Melia和Shevchuk(Mon Not R Astron Soc 419:2579,2012)(MS)提出了所谓的R_h = ct宇宙论,其中宇宙R_h的“引力视界”等于自“大砰”。在这里,我们想看看基本声明R_h = ct是否正确,因为MShave并未对此给出任何有力推导。本质上,我们将比较使用适当的超势以及直接方法获得的弗里德曼宇宙的爱因斯坦能量动量复合体(EMC)的孪生表达式。为了能够对孪生表达式进行有意义的比较,可以通过使用相同的准笛卡尔坐标来计算两个表达式。但是,我们并不声称爱因斯坦EMC优于定义自重系统EM的许多其他方法。实际上,对于静态的孤立球面系统,Lynden-Bell和Katz的独立于坐标的场能量的想法(Mon Not R Astron Soc 213:21,1985)可能在物理上非常重要。但是,在这里,我们使用Einstein EMC是因为(i)我们的系统是非静态的并且不是孤立的(ii)我们的主要目标是找不到EM的绝对值,最后(iii)仅爱因斯坦伪张量提供EM的等价双胞胎表达,无论有任何物理意义,都可以等同。通过对爱因斯坦能量的等效孪生表达式进行这样的比较,我们找到了一个精确的证据,说明即使在数学上可以设想任意维数的弯曲空间,为什么弗里德曼宇宙也必须在空间上是平坦的。另外,显然,遵循R_h = ct命题所坚持的比例因子S(t)∝ t。但是,由于这种形式S(t)∝ t与(真空)千分尺非常相似,并且由于隐含的非物理状态方程,R_h = ct宇宙论不太可能表示物理宇宙。

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