宇宙学中的全球和局部引力红移及其对理论和观测的影响

Zahid Zakir
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引用次数: 0

摘要

提出了宇宙学中引力红移(GRC)的一致理论。全局GRC的产生是由于在光子传播过程中物质密度的减小导致引力时间膨胀的减弱。在膨胀的世界中,由于以较小半径发射的光子到达较大半径,因此由于观察者和源之间的球体引力减弱而产生局部GRC。在静态世界中,在球体外围的光子交换处不存在GRC。在任何情况下,从观察者到源的光子与从源到观察者的光子具有相同的GRC,这与宇宙学原理是一致的。考虑了局部和全局GRC对宇宙学模型及其参数的影响,以及对遥远天体和CMB数据的修正。在附录中说明了宇宙学中引力频移的前两种处理方法的不一致性。它们:a)没有考虑到全球GRC;b)不是从源和观测者之间的球场,而是从其中一个球周围的球场推导出局部GRC;C)相互矛盾(转变的迹象是相反的);d)违反了宇宙学原理(改变传播方向会改变位移的符号),e)基于一种错觉,即弗里德曼模型应该包含引力位移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Global and local gravitational redshifts in cosmology and their consequences for theory and observations
A consistent theory of gravitational redshift in cosmology (GRC) is formulated. The global GRC arises due to weakening of gravitational time dilation due to decreasing of matter density during the propagation time of photons. In the expanding world the local GRC arises due to the weakening of gravity of the sphere between observer and source, since photons emitted at a smaller radius arrive at a larger one. In static world there is no GRC at the exchange of photons at the periphery of this sphere. In any case photons from observer to source have the same GRC as photons from source to observer, which is in agreement with the cosmological principle. Consequences of the local and global GRC for cosmological models and their parameters, as well as corrections to data on distant objects and CMB, are considered. In Appendix the inconsistency of two former treatments of the gravitational frequency shift in cosmology is shown. They: a) did not take into account the global GRC; b) derived the local GRC not from the field of the sphere between the source and observer, but from the field of spheres around one of them; c) contradicted each other (the signs of shifts are opposite); d) violated cosmological principle (changing the propagation direction changes the sign of shift) and e) were based on the delusion that the Friedmann model supposedly contains the gravitational shift.
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