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Anomalous Electromagnetic Transport in Compact Stars

机译:紧凑恒星中的异常电磁传输

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We study the anomalous electromagnetic transport properties of a quark-matter phase that can be realized in the presence of a magnetic field in the low-temperature/moderate-high-density region of the Quantum Chromodynamics (QCD) phase map. In this so-called Magnetic Dual Chiral Density Wave phase, an inhomogeneous condensate is dynamically induced producing a nontrivial topology, a consequence of the asymmetry of the lowest Landau level modes of the quasiparticles in this phase. The nontrivial topology manifests in the electromagnetic effective action via a chiral anomaly term θ F μ ν F ? μ ν , with an axion field θ given by the phase of the Dual Chiral Density Wave condensate. The coupling of the axion with the electromagnetic field leads to several macroscopic effects that include, among others, an anomalous, nondissipative Hall current, an anomalous electric charge, magnetoelectricity, and the formation of a hybridized propagating mode known as an axion polariton. The possible existence of this phase in the inner core of neutron stars opens a window to search for signals of its anomalous transport properties.
机译:我们研究了在量子色动力学(QCD)相图的低温/中高密度区域中存在磁场的情况下,可以实现的夸克相的反常电磁传输特性。在这个所谓的磁双手性密度波相中,动态地诱导了不均匀的凝结物,产生了非平凡的拓扑结构,这是该相中准粒子的最低朗道能级模式不对称的结果。非平凡的拓扑结构通过手征异常项θFμνF?表现出电磁有效作用。 μν,其中轴性场θ由双手性密度波凝结物的相位给定。轴与电磁场的耦合会导致多种宏观效应,其中包括反常的,非耗散的霍尔电流,反常的电荷,磁电以及形成称为轴极化子的杂化传播模式。中子星内核中该相的可能存在为寻找其异常传输性质的信号打开了一个窗口。

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