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突发规范场与高温超导体。

Emergent gauge fields and the high-temperature superconductors.

机构信息

Department of Physics, Harvard University, Cambridge, MA 02138, USA Perimeter Institute for Theoretical Physics, Waterloo, Ontario, Canada N2L 2Y5

出版信息

Philos Trans A Math Phys Eng Sci. 2016 Aug 28;374(2075). doi: 10.1098/rsta.2015.0248.

Abstract

The quantum entanglement of many states of matter can be represented by electric and magnetic fields, much like those found in Maxwell's theory. These fields 'emerge' from the quantum structure of the many-electron state, rather than being fundamental degrees of freedom of the vacuum. I review basic aspects of the theory of emergent gauge fields in insulators in an intuitive manner. In metals, Fermi liquid (FL) theory relies on adiabatic continuity from the free electron state, and its central consequence is the existence of long-lived electron-like quasi-particles around a Fermi surface enclosing a volume determined by the total density of electrons, via the Luttinger theorem. However, long-range entanglement and emergent gauge fields can also be present in metals. I focus on the 'fractionalized Fermi liquid' (FL*) state, which also has long-lived electron-like quasi-particles around a Fermi surface; however, the Luttinger theorem on the Fermi volume is violated, and this requires the presence of emergent gauge fields, and the associated loss of adiabatic continuity with the free electron state. Finally, I present a brief survey of some recent experiments in the hole-doped cuprate superconductors, and interpret the properties of the pseudogap regime in the framework of the FL* theory.This article is part of the themed issue 'Unifying physics and technology in light of Maxwell's equations'.

摘要

许多物质态的量子纠缠可以用电场和磁场来表示,这很像麦克斯韦理论中的那些场。这些场“从多电子态的量子结构中涌现出来”,而不是真空中的基本自由度。我以直观的方式回顾了绝缘体内涌现规范场理论的基本方面。在金属中,费米液体(FL)理论依赖于从自由电子态的绝热连续性,其核心结果是在费米面周围存在长寿命的类电子准粒子,这些准粒子在由总电子密度决定的体积内围绕费米面,这是通过 Luttinger 定理得到的。然而,长程纠缠和涌现规范场也可能存在于金属中。我关注的是“分数化费米液体”(FL*)态,它在费米面周围也有长寿命的类电子准粒子;然而,Luttinger 定理关于费米体积的说法是被违反的,这就需要涌现规范场的存在,以及与自由电子态的绝热连续性的丧失。最后,我对掺杂空穴的铜氧化物高温超导体中的一些最近实验进行了简要调查,并在 FL*理论的框架内解释了赝能隙区的性质。本文是主题为“根据麦克斯韦方程组统一物理和技术”的特刊的一部分。

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