Kirchhoff-Institut für Physik, Universität Heidelberg, Im Neuenheimer Feld 227, 69120 Heidelberg, Germany.
Phys Rev Lett. 2011 Jan 7;106(1):011302. doi: 10.1103/PhysRevLett.106.011302.
A method to investigate acoustic Hawking radiation is proposed, where entanglement entropy and mutual information are measured from the fluctuations of the number of particles. The rate of entropy radiated per one-dimensional (1D) channel is given by S=κ/12, where κ is the sound acceleration on the sonic horizon. This entropy production is accompanied by a corresponding formation of mutual information to ensure the overall conservation of information. The predictions are confirmed using an ab initio analytical approach in transonic flows of 1D degenerate ideal Fermi fluids.
提出了一种研究声学霍金辐射的方法,通过测量粒子数的涨落来测量纠缠熵和互信息。每个一维(1D)通道辐射的熵率由 S=κ/12 给出,其中 κ 是声速视界上的声加速度。这种熵产生伴随着相应的互信息形成,以确保信息的整体守恒。在一维简并理想费米流体的跨声速流中,使用从头算分析方法验证了这些预测。