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On the Superradiance of Spin-1 Waves in an Equatorial Wedge around a Kerr Hole

机译:围绕Kerr孔的赤道楔形物中Spin-1波的超辐射

摘要

Recently Van Putten has suggested that superradiance of magnetosonic waves in a toroidal magnetosphere around a Kerr black hole may play a role in the central engine of gamma-ray bursts. In this context, he computed (in the WKB approximation) the superradiant amplification of scalar waves confined to a thin equatorial wedge around a Kerr hole and found that the superradiance is higher than for radiation incident over all angles. This paper presents calculations of both spin-0 (scalar) superradiance (integrating the radial equation rather than using the WKB method) and and spin-1 (electromagnetic/magnetosonic) superradiance, in Van Putten's wedge geometry. In contrast to the scalar case, spin-1 superradiance decreases in the wedge geometry, decreasing the likelihood of its astrophysical importance.
机译:最近,范普顿(Van Putten)提出,克尔(Kerr)黑洞周围的环形磁层中的磁声波超辐射可能在伽马射线爆发的中央引擎中起作用。在这种情况下,他计算(以WKB近似)被限制在Kerr孔周围的薄赤道楔形的标量波的超辐射放大倍数,并发现该超辐射高于在所有角度入射的辐射。本文介绍了Van Putten楔形几何体中自旋0(标量)超辐射(集成径向方程式,而不是使用WKB方法)和自旋1(电磁/磁声)超辐射的计算。与标量情况相反,spin-1超辐射在楔形几何体中减小,从而降低了其天体重要性的可能性。

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    Aguirre A N;

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  • 年度 1999
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  • 原文格式 PDF
  • 正文语种 eng
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