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量子临界性与黑洞。

Quantum criticality and black holes.

作者信息

Sachdev Subir, Müller Markus

机构信息

Department of Physics, Harvard University, Cambridge, MA 02138, USA.

出版信息

J Phys Condens Matter. 2009 Apr 22;21(16):164216. doi: 10.1088/0953-8984/21/16/164216. Epub 2009 Mar 31.

Abstract

Many condensed matter experiments explore the finite temperature dynamics of systems near quantum critical points. Often, there are no well-defined quasiparticle excitations, and so quantum kinetic equations do not describe the transport properties completely. The theory shows that the transport coefficients are not proportional to a mean free scattering time (as is the case in the Boltzmann theory of quasiparticles), but are completely determined by the absolute temperature and by equilibrium thermodynamic observables. Recently, explicit solutions of this quantum critical dynamics have become possible via the anti-de Sitter/conformal field theory duality discovered in string theory. This shows that the quantum critical theory provides a holographic description of the quantum theory of black holes in a negatively curved anti-de Sitter space, and relates its transport coefficients to properties of the Hawking radiation from the black hole. We review how insights from this connection have led to new results for experimental systems: (i) the vicinity of the superfluid-insulator transition in the presence of an applied magnetic field, and its possible application to measurements of the Nernst effect in the cuprates, (ii) the magnetohydrodynamics of the plasma of Dirac electrons in graphene and the prediction of a hydrodynamic cyclotron resonance.

摘要

许多凝聚态物质实验探索量子临界点附近系统的有限温度动力学。通常,不存在明确界定的准粒子激发,因此量子动力学方程无法完全描述输运性质。该理论表明,输运系数与平均自由散射时间不成正比(准粒子的玻尔兹曼理论情况如此),而是完全由绝对温度和平衡热力学可观测量决定。最近,通过弦理论中发现的反德西特/共形场论对偶性,这种量子临界动力学的显式解成为可能。这表明量子临界理论为负曲率反德西特空间中黑洞的量子理论提供了一种全息描述,并将其输运系数与黑洞霍金辐射的性质联系起来。我们回顾了这种联系所带来的见解如何为实验系统带来新结果:(i)在存在外加磁场的情况下超流 - 绝缘体转变的临近区域,及其在铜酸盐中能斯特效应测量中的可能应用;(ii)石墨烯中狄拉克电子等离子体的磁流体动力学以及流体动力学回旋共振的预测。

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