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On the space-time curvature experienced by quasiparticle excitations in the Painleve-Gullstrand effective geometry

机译:关于Painleve-Gullstrand有效几何中的准粒子激发所经历的时空曲率

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We consider quasiparticle propagation in constant-speed-of-sound (iso-tachic) and almost incompressible (iso-pycnal) hydrodynamic flows, using the technical machinery of general relativity to investigate the "effective space-time geometry" that is probed by the quasiparticles. This effective geometry, described for the quasiparticles of condensed matter systems by the Painleve-Gullstrand metric, generally exhibits curvature (in the sense of Riemann) and many features of quasiparticle propagation can be re-phrased in terms of null geodesics, Killing vectors, and Jacobi fields. As particular examples of hydrodynamic flow we consider shear flow, a constant-circulation vortex, flow past an impenetrable cylinder, and rigid rotation. (C) 2003 Elsevier Science (USA). All rights reserved. [References: 31]
机译:我们使用广义相对论的技术机制来研究准有效声速(等速)和几乎不可压缩(等速)流体动力流中的准粒子传播,以研究“有效时空几何”。准粒子。通过Painleve-Gullstrand度量标准,该有效几何形状描述为凝聚态系统的准粒子,通常表现出曲率(在黎曼意义上),并且准粒子传播的许多特征可以用零大地测地线,Killing向量和雅各比领域。作为流体动力流的特定示例,我们考虑剪切流,恒定循环涡流,流经不可渗透圆柱体的流以及刚性旋转。 (C)2003 Elsevier Science(美国)。版权所有。 [参考:31]

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