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全息涡旋液体和超流湍流。

Holographic vortex liquids and superfluid turbulence.

机构信息

Department of Physics, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Science. 2013 Jul 26;341(6144):368-72. doi: 10.1126/science.1233529.

Abstract

Superfluid turbulence is a fascinating phenomenon for which a satisfactory theoretical framework is lacking. Holographic duality provides a systematic approach to studying such quantum turbulence by mapping the dynamics of a strongly interacting quantum liquid into the dynamics of classical gravity. We use this gravitational description to numerically construct turbulent flows in a holographic superfluid in two spatial dimensions. We find that the superfluid kinetic energy spectrum obeys the Kolmogorov -5/3 scaling law, with energy injected at long wavelengths undergoing a direct cascade to short wavelengths where dissipation by vortex annihilation and vortex drag becomes efficient. This dissipation has a simple gravitational interpretation as energy flux across a black hole event horizon.

摘要

超流湍流是一种引人入胜的现象,但缺乏令人满意的理论框架。全息对偶为研究这种量子湍流提供了一种系统的方法,即将强相互作用的量子液体的动力学映射到经典引力的动力学中。我们使用这种引力描述在二维全息超流体中数值构建湍流。我们发现超流动能谱遵循 Kolmogorov-5/3 标度律,在长波长处注入的能量直接级联到短波长处,在短波长处通过涡旋湮灭和涡旋拖拽耗散变得有效。这种耗散具有简单的引力解释,即黑洞视界的能量通量。

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