Superradiant scattering of orbital angular momentum beams

Cisco Gooding, S. Weinfurtner, W. Unruh
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引用次数: 7

Abstract

We consider the wave-structure coupling between an orbital angular momentum beam and a rapidly rotating disk, and present a new configuration exhibiting the wave amplification effect known as rotational superradiance. While initially envisioned in terms of the scattering of an incident wave directed perpendicular to an object's rotation axis, we demonstrate in the context of acousto-mechanics that superradiant amplification can also occur with a vortex beam directed parallel to the rotation axis. We propose two different experimental routes: one must either work with rotations high enough that the tangential velocity at the outer edge of the disk exceeds the speed of sound, or use evanescent sound waves. We argue that the latter possibility is more promising, and provides the opportunity to probe a previously unexamined parameter regime in the acoustics of rotating porous media.
轨道角动量光束的超辐射散射
我们考虑了轨道角动量光束和快速旋转圆盘之间的波结构耦合,并提出了一种新的结构,表现出被称为旋转超辐射的波放大效应。虽然最初设想的是垂直于物体旋转轴的入射波的散射,但我们在声学力学的背景下证明,平行于旋转轴的涡旋光束也可以发生超辐射放大。我们提出了两种不同的实验路线:一种必须使用足够高的旋转,使圆盘外缘的切向速度超过声速,或者使用消失的声波。我们认为后一种可能性更有希望,并提供了探索旋转多孔介质声学中以前未检查的参数制度的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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