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Can a regular black hole be observationally distinguished from singular black holes as spinning lens partner in PSR-BH binaries?

机译:常规的黑洞可以从奇异的黑洞视为PSR-BH二进制文件中的旋转镜头伴侣吗?

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To answer the question posed in the title, we consider a novel diagnostic, viz., the difference in the time of arrival (TOA) at the observer of two light rays that simultaneously emanate from a source behind a spinning lens and pass by either side of the lens to reach the observer. This is completely different from the usualShapiro gravitational time delay, where only one onward light ray is reflected back to the observer. The TOA essentially samples the frame dragging caused by the spinning lens, apart from other lens parameters. Assuming a charged regular Ayon-Beato and Garcia black hole as the spinning lens partner in some typical astrophysical pulsar black hole (PSR-BH) binaries, which provide the best laboratory for testing the TOA effect, we theoretically study how the prediction depends on the gyromagnetic ratio ($Q/M$) and how it compares with thosewhen the role of spinning lens partner is played by the centrally singular Kerr–Newman and Kerr black holes. The numerical estimates for two illustrative binary lens systems show microsecond-level delay at the zeroth order, which should be measurable. However, the TOA predictions under thin-lens approximation are shown to differ only at third or higher orders of smallness indicating that the regular and singular black holes cannot be observationally distinguished despite significant qualitative differences existing among them.
机译:要回答标题中提出的问题,我们考虑一个新颖的诊断,viz。,两个光线观察者的到达时间(toa)的差异,它们同时从旋转镜头后面的源源自散发,并通过任一侧镜头到达观察者。这与usualshapiro引力时间延迟完全不同,其中一个向上光线被反射回观察者。 TOA基本上采样由旋转镜头引起的框架拖动,除了其他镜头参数。假设一个常规的常规Ayon-Beato和Garcia Black Hole是一些典型的天体药物脉冲黑洞(PSR-BH)二进制文件的旋转镜头合作伙伴,这为测试TOA效应提供了最好的实验室,理论上研究了预测如何取决于旋转磁性比率($ Q / M $)以及如何与纺纱镜头伙伴的角色由中央奇异的Kerre-Newman和Kerr Black孔扮演的纺纱镜头伙伴的作用。两个说明性二进制透镜系统的数值估计显示了Zeroth顺序的微秒级延迟,这应该是可测量的。然而,薄透镜近似下的TOA预测显示仅在第三或更高的小于的小或较高的阶数,表明常规和奇异的黑洞不能遵守,尽管它们中存在的显着定性差异,但是仍然无法观察到。

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