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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Circular geodesic radiation in Schwarzschild spacetime: A semiclassical approach
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Circular geodesic radiation in Schwarzschild spacetime: A semiclassical approach

机译:Schwarzschild Spacetime中的圆形测距辐射:一种半导体方法

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摘要

Extreme curvature settings and nontrivial causal structure of curved spacetimes may have interesting theoretical and practical implications for quantum field theories. Radiation emission in black hole spacetimes is one such scenario in which the semiclassical approach, i.e. quantum fields propagating in a nondynamical background spacetime, adds a very simple conceptual point of view and allows us to compute the emitted power in a straightforward way. Within this context, we reexamine sources in circular orbit around a Schwarzschild black hole, investigating the emission of scalar, electromagnetic and gravitational radiations. The analysis of the differences and similarities between these cases provide an excellent overview of the powerful conceptual and computational tool that is quantum field theory in curved spacetime.
机译:弯曲的弯曲时间的极端曲率设置和非动力因果结构可能对量子域理论具有有趣的理论和实践意义。 黑洞时刻中的辐射发射是一种这样的场景,其中半导体方法,即在非动力背景中传播的量子场,增加了一个非常简单的概念性观点,并允许我们以直接的方式计算发射的功率。 在这种情况下,我们在施瓦茨柴尔氏黑洞周围的圆形轨道中重新征用圆形轨道,调查标量,电磁和引力辐射的排放。 这些情况之间的差异和相似性分析提供了弯曲时空的量子场理论的强大概念和计算工具的优异概述。

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