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Acoustic black holes: horizons, ergospheres, and Hawking radiation

机译:声学黑洞:视界,地球运动和霍金辐射

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摘要

It is a deceptively simple question to ask how acoustic disturbances propagate in a non-homogeneous flowing fluid. This question can be answered by invoking the language of Lorentzian differential geometry: If the fluid is barotropic and inviscid, and the flow is irrotational (though possibly time dependent), then the equation of motion for the velocity potential describing a sound wave is identical to that for a minimally coupled massless scalar field propagating in a (3+1)-dimensional Lorentzian geometry. The acoustic metric governing the propagation of sound depends algebraically on the density, flow velocity, and local speed of sound. This rather simple physical system is the basis underlying a deep and fruitful analogy between the black holes of Einstein gravity and supersonic fluid flows. Many results and definitions can be carried over directly from one system to another. For example, I will show how to define the ergosphere, trapped regions, acoustic apparent horizon, and acoustic event horizon for a supersonic fluid flow, and will exhibit the close relationship between the acoustic metric for the fluid flow surrounding a point sink and the Painleve-Gullstrand form of the Schwarzschild metric for a black hole. This analysis can be used either to provide a concrete non-relativistic model for black hole physics, up to and including Hawking radiation, or to provide a framework for attacking acoustics problems with the full power of Lorentzian differential geometry.
机译:问一下声学干扰如何在非均匀流动的流体中传播是一个看似简单的问题。可以通过调用洛伦兹微分几何的语言来回答这个问题:如果流体是正压和无粘性的,并且流动是非旋转的(虽然可能是时间相关的),那么描述声波的速度势的运动方程与对于在(3 + 1)维洛伦兹几何中传播的最小耦合无质量标量场的计算。控制声音传播的声学指标在代数上取决于声音的密度,流速和局部速度。这种相当简单的物理系统是在爱因斯坦引力的黑洞与超音速流体流之间进行深刻而富有成果的类比的基础。许多结果和定义可以直接从一个系统转移到另一个系统。例如,我将展示如何定义超音速流体流的人体工圈,被困区域,声视层和声事件层,并展示围绕点汇和潘恩列夫的流体流的声学度量之间的紧密关系。黑洞的Schwarzschild度量的-Gullstrand形式。该分析可用于为黑洞物理学提供一个具体的非相对论模型,直至并包括霍金辐射,或者为利用洛伦兹微分几何的全能来解决声学问题提供框架。

著录项

  • 作者

    Visser, M;

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  • 年度 1998
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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