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Entanglement rules for holographic Fermi surfaces

机译:全息费米曲面的纠缠规则

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In this paper, based on the notion of Gauge/Gravity duality, we explore the laws of entanglement thermodynamics for most generic classes of Quantum Field Theories with hyperscaling violation. In our analysis, we note that for Quantum Field Theories with compressible quark like excitation, the first law of entanglement thermodynamics gets modified due to the presence of an additional term that could be identified as the entanglement chemical potential associated with hidden Fermi surfaces of the boundary theory. Most notably, we find that the so called entanglement chemical potential does not depend on the size of the entangling region and is purely determined by the quark d.o.f. encoded within the entangling region.
机译:在本文中,基于量规/引力对偶性的概念,我们探索了违反超尺度的大多数通用类量子场论的纠缠热力学定律。在我们的分析中,我们注意到,对于具有可压缩夸克(如激发)的量子场论,纠缠热力学的第一定律由于存在附加项而被修改,该附加项可以被确定为与边界的隐费米表面相关的纠缠化学势。理论。最值得注意的是,我们发现所谓的纠缠化学势不取决于纠缠区的大小,而完全由夸克d.o.f确定。在纠缠区域内编码。

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