Effects of Interaction Between Gravitation and Nonlinear Electrodynamics On Scalar Field Evolution
- ISSN号:0253-6102
- 期刊名称:《理论物理通讯:英文版》
- 时间:0
- 分类:O412.1[理学—理论物理;理学—物理] O442[理学—电磁学;理学—物理]
- 作者机构:[1]College of Physics and Information Science, Key Laboratory of Low Dimensional Quantum Structures and Quantum Control of Ministry of Education, Hunan Normal University, Changsha 410081, China
- 相关基金:Supported by the National Natural Science Foundation of China under Grant No. 10873004, the Program for Excellent Talents in Hunan Normal University, the State Key Development Program for Basic Research Program of China under Grant No. 2010CB832803, the Key project of the National Natural Science Foundation of China under Grant No. 10935013 and Construct Program of the National Key Discipline and the Program for Changjiang Scholars and Innovative Research Team in University under Grant No. IRT0964
关键词:
标量场, 非线性, 电动力学, 相互作用, 引力, 演化, 动力学耦合, WKB近似, scalar field, nonlinear electrodynamics, dyadosphere spacetime
中文摘要:
在这份报纸,我们由使用第三顺序的 WKB 近似在 dyadosphere spacetime 调查分级的地进化。我们发现在引力和非线性的 electrodynamics 之间的联合术语让分级的地更快速腐烂,它也让分级的地更慢慢地震荡。在另外的词上,这个联合术语作为一个抑制因素在分级的地进化上生效。同时,这些效果与更高的角度量数字为分级的地变得更明显。
英文摘要:
In this paper we investigate the scalar field evolution in the dyadosphere spacetime by using the third-order WKB approximation. We find that the coupling term between the gravitation and the nonlinear electrodynamics makes the scalar field decay more quickly and it also makes the scalar field oscillate more slowly. On the o'ther words, this coupling term takes effect on the scalar field evolution as a damping factor. At the same time these effects become more obvious for the scalar field with higher angle quantum number.