物理
视界
声速
声波黑洞
玻色-爱因斯坦凝聚体
引力波
黑洞(网络)
实现(概率)
声波
地平线
量子电动力学
机械
事件(粒子物理)
声学
量子力学
霍金辐射
天文
计算机科学
微黑洞
计算机网络
数学
统计
路由协议
链路状态路由协议
布线(电子设计自动化)
作者
Oren Lahav,Amir Itah,A. Blumkin,Carmit Gordon,Shahar Rinott,Alona Zayats,Jeff Steinhauer
标识
DOI:10.1103/physrevlett.105.240401
摘要
We have created an analogue of a black hole in a Bose-Einstein condensate. In this sonic black hole, sound waves, rather than light waves, cannot escape the event horizon. A step-like potential accelerates the flow of the condensate to velocities which cross and exceed the speed of sound by an order of magnitude. The Landau critical velocity is therefore surpassed. The point where the flow velocity equals the speed of sound is the sonic event horizon. The effective gravity is determined from the profiles of the velocity and speed of sound. A simulation finds negative energy excitations, by means of Bragg spectroscopy.
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