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费米液体系统热力学中的分支割线奇点。

Branch-cut singularities in thermodynamics of Fermi liquid systems.

作者信息

Shekhter Arkady, Finkel'stein Alexander M

机构信息

Department of Condensed Matter Physics, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Proc Natl Acad Sci U S A. 2006 Oct 24;103(43):15765-9. doi: 10.1073/pnas.0607200103. Epub 2006 Oct 12.

Abstract

The recently measured spin susceptibility of the two-dimensional electron gas exhibits a strong dependence on temperature, which is incompatible with the standard Fermi liquid phenomenology. In this article, we show that the observed temperature behavior is inherent to ballistic two-dimensional electrons. Besides the single-particle and collective excitations, the thermodynamics of Fermi liquid systems includes effects of the branch-cut singularities originating from the edges of the continuum of pairs of quasiparticles. As a result of the rescattering induced by interactions, the branch-cut singularities generate nonanalyticities in the thermodynamic potential that reveal themselves in anomalous temperature dependences. Calculation of the spin susceptibility in such a situation requires a nonperturbative treatment of the interactions. As in high-energy physics, a mixture of the collective excitations and pairs of quasiparticles can effectively be described by a pole in the complex momentum plane. This analysis provides a natural explanation for the observed temperature dependence of the spin susceptibility, both in sign and in magnitude.

摘要

最近测量的二维电子气的自旋磁化率表现出对温度的强烈依赖性,这与标准费米液体现象学不相符。在本文中,我们表明观察到的温度行为是弹道二维电子所固有的。除了单粒子和集体激发外,费米液体系统的热力学还包括源自准粒子对连续统边缘的分支切割奇点的影响。由于相互作用引起的再散射,分支切割奇点在热力学势中产生非解析性,这在反常温度依赖性中表现出来。在这种情况下计算自旋磁化率需要对相互作用进行非微扰处理。与高能物理一样,集体激发和准粒子对的混合可以通过复动量平面中的一个极点有效地描述。该分析为观察到的自旋磁化率的温度依赖性在符号和大小上都提供了一个自然的解释。

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