论文标题
色散黑洞类似物
Superradiance in dispersive black hole analogues
论文作者
论文摘要
在凝结物质系统的背景下,包含高于二阶的空间衍生物的波动方程。此类方程的解决方案包含两个以上的模式,因此,与两种模式情况相比,不同模式之间可能的相互作用的范围显着增强。我们开发了一个框架,用于根据分散关系的经典转折点分析不同的模式相互作用。然后,我们将此框架应用于用排水浴缸涡流的深水重力波的散射,该系统构成了非分散性极限中旋转黑洞的类似物。特别是,我们表明,不同的散射结果由光环频率,通常应用于黑洞物理学的概念以及两个与分散强度有关的新频率。我们发现,反射波被超级放大的频率范围似乎是对非分散案例的简单修改。但是,观察这种扩增的条件是通过与另一种模式之一散射后反射到系统的事实,这一事实变得复杂。我们提供了完整分散式体系中反射系数的估计。
Wave equations containing spatial derivatives which are higher than second order arise naturally in the context of condensed matter systems. The solutions of such equations contain more than two modes and consequently, the range of possible interactions between the different modes is significantly enhanced compared to the two mode case. We develop a framework for analysing the different mode interactions based on the classical turning points of the dispersion relation. We then apply this framework to the scattering of deep water gravity waves with a draining bathtub vortex, a system which constitutes the analogue of a rotating black hole in the non-dispersive limit. In particular, we show that the different scattering outcomes are controlled by the light-ring frequencies, a concept routinely applied in black hole physics, and two new frequencies which are related to the strength of dispersion. We find that the frequency range in which the reflected wave is superradiantly amplified appears as a simple modification to the non-dispersive case. However, the condition to observe this amplification is complicated by the fact that a superradiant mode can be reflected back into the system by scattering with one of the additional modes. We provide estimates for the reflection coefficients in the full dispersive regime.