宇宙磁场中的相对论引力波光子转换

IF 0.4 Q4 PHYSICS, PARTICLES & FIELDS
L. A. Panasenko
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引用次数: 0

摘要

文章评估了在辐射主导(RD)时代,频率为\({{10}^{ - 16}}}- {{10}^{ - 18}}}\)Hz的残余引力波在宇宙磁场影响下转化为电磁波所导致的振幅抑制。首先,在弗里德曼-勒梅特尔-罗伯逊-沃克公设中得到了引力波和电磁波在外部磁场中联合传播的方程组,并考虑了电磁波与原生等离子体的相互作用。然后,在近似均匀宇宙磁场的情况下对所得到的系统进行了数值求解,该磁场的强度相当于 1 nG 的现代值(对于 RD 时代,磁场强度随着反尺度因子平方的增加而增加)。最后得出的结论是,所考虑的转换效应对长波遗迹引力波振幅的影响微乎其微。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relic Gravitational Wave Conversion into Photons in the Cosmological Magnetic Field

The article evaluates the amplitude suppression for the relict gravitational waves with a frequency of \({{10}^{{ - 16}}}- {{10}^{{ - 18}}}\) Hz due to their conversion into electromagnetic waves under the influence of a cosmological magnetic field during the era of radiation dominance (RD). At first, a system of equations was obtained for the joint propagation of gravitational and electromagnetic waves in an external magnetic field in the Friedmann–Lemaitre–Robertson–Walker metric and the interaction of electromagnetic waves with the primary plasma was taken into account. Then the resulting system is solved numerically in the approximation of a uniform cosmological magnetic field with a strength corresponding to the modern value of 1 nG (for the RD epoch the magnetic field strength increases as the inverse scale factor squared). Finally a conclusion was made about the insignificant influence of the considered conversion effect on the amplitude of long-wave relic gravitational waves.

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来源期刊
Physics of Particles and Nuclei Letters
Physics of Particles and Nuclei Letters PHYSICS, PARTICLES & FIELDS-
CiteScore
0.80
自引率
20.00%
发文量
108
期刊介绍: The journal Physics of Particles and Nuclei Letters, brief name Particles and Nuclei Letters, publishes the articles with results of the original theoretical, experimental, scientific-technical, methodological and applied research. Subject matter of articles covers: theoretical physics, elementary particle physics, relativistic nuclear physics, nuclear physics and related problems in other branches of physics, neutron physics, condensed matter physics, physics and engineering at low temperatures, physics and engineering of accelerators, physical experimental instruments and methods, physical computation experiments, applied research in these branches of physics and radiology, ecology and nuclear medicine.
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