论文标题

磁性黑洞的天体物理提示

Astrophysical hints for magnetic black holes

论文作者

Ghosh, Diptimoy, Thalapillil, Arun, Ullah, Farman

论文摘要

我们讨论了潜在的天体物理特征的聚宝盆,并在各种肿块的磁性黑洞上构成了约束。正如最近强调的那样,作为具有巨大电磁场的潜在生存的天体物理候选者,它们可能是基本物理学,电子eak对称性恢复和非扰动量子场理论现象的理想窗口。我们研究了各种潜在的天体物理指针和边界 - 包括电荷的限制,渐近平坦的稳定轨道和地平线的位置,在渐近和渐近的安静背景下,银河磁场的边界以及暗物质测量值,特征性电磁磁通以及在二元期间的电动磁性磁性磁力和较差的电动磁性磁力。这些物体周围的稳定轨道具有其性质的烙印,在渐近的自在情况下,稳定的外轨道出现也有一个质性的新功能。我们考虑磁性和中性的二元灵感,以及磁性和磁性黑洞对。电磁排放和重力波形演化以及黑色孔间隔,显示出不同的特征。许多天体物理特征在观察上可能是巨大的 - 例如,即使在参数空间的区域,由于磁场仍然比磁铁大的数量级,因此在二进制Inspress中,它们的电气磁排放也很壮观。在添加新结果的同时,我们的讨论还补充了最近出现在文献中的类似情况下的作品。

We discuss a cornucopia of potential astrophysical signatures and constraints on magnetically charged black holes of various masses. As recently highlighted, being potentially viable astrophysical candidates with immense electromagnetic fields, they may be ideal windows to fundamental physics, electroweak symmetry restoration and non-perturbative quantum field theoretic phenomena. We investigate various potential astrophysical pointers and bounds -- including limits on charges, location of stable orbits and horizons in asymptotically flat and asymptotically de Sitter backgrounds, bounds from galactic magnetic fields and dark matter measurements, characteristic electromagnetic fluxes and tell-tale gravitational wave emissions during binary inspirals. Stable orbits around these objects hold an imprint of their nature and in the asymptotically de Sitter case, there is also a qualitatively new feature with the emergence of a stable outer orbit. We consider binary inspirals of both magnetic and neutral, and magnetic and magnetic, black hole pairs. The electromagnetic emissions and the gravitational waveform evolution, along with inter-black hole separation, display distinct features. Many of the astrophysical signatures may be observationally glaring -- for instance, even in regions of parameter space where no electroweak corona forms, owing to magnetic fields that are still many orders of magnitude larger than even Magnetars, their consequent electromagnetic emissions will be spectacular during binary inspirals. While adding new results, our discussions also complement works in similar contexts, that have appeared recently in the literature.

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