Vortical waves in a quantum fluid with vector, axial, and helical charges. I. Non-dissipative transport

IF 4.2 2区 物理与天体物理 Q2 PHYSICS, PARTICLES & FIELDS The European Physical Journal C Pub Date : 2024-12-26 DOI:10.1140/epjc/s10052-024-13713-6
Sergio Morales-Tejera, Victor E. Ambruş, Maxim N. Chernodub
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Abstract

Due to the spin-orbit coupling, Dirac fermions, submerged in a thermal bath with finite macroscopic vorticity, exhibit a spin polarisation along the direction parallel to the vorticity vector \(\varvec{\Omega }\). Due to the symmetries of the Lagrangian for free massless Dirac particles, there are three independent and classically conserved currents corresponding to the vector, axial, and helical charges. The constitutive relations for the charge currents and the stress-energy tensor at thermal equilibrium, derived in the framework of quantum field theory at finite temperature, reveal vorticity-induced contributions that deviate from the perfect fluid form. In this paper, we consider the mode structure of the corresponding hydrodynamical theory and derive collective excitations associated with coherent fluctuations of all three charges. We show that the chirally imbalanced rotating fluid should possess non-reciprocal gapless waves that propagate with different velocities along and opposite to the vorticity vector. We also uncover a strictly unidirectional mode, which we call the axial vortical wave, propagating in the background of the axial charge density. The emergence of this wave can be traced back to earlier studies of vortical chiral fluids in a hydrodynamic approach. We also point out an unexpected instability in the limit of degenerate matter and discuss possible solutions when helicity and axial charge non-conservation are taken into account.

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具有矢量、轴向和螺旋电荷的量子流体中的涡旋波。1 .非耗散输运
由于自旋-轨道耦合,浸泡在具有有限宏观涡度的热浴中的狄拉克费米子沿平行于涡度矢量\(\varvec{\Omega }\)的方向表现出自旋极化。由于自由无质量狄拉克粒子的拉格朗日量的对称性,有三个独立的经典守恒电流对应于矢量、轴向和螺旋电荷。在有限温度下,在量子场论的框架下推导出热平衡时电荷电流和应力-能量张量的本构关系,揭示了偏离完美流体形式的涡度诱导贡献。在本文中,我们考虑了相应的流体力学理论的模结构,并推导了与这三种电荷的相干涨落相关的集体激励。我们表明,手性不平衡的旋转流体应该具有沿涡量矢量和反涡量矢量以不同速度传播的非互易无间隙波。我们还发现了一个严格的单向模式,我们称之为轴向涡波,在轴向电荷密度的背景下传播。这种波的出现可以追溯到早期在流体力学方法中对旋涡手性流体的研究。我们还指出了简并物质极限下的一种意想不到的不稳定性,并讨论了考虑螺旋度和轴向电荷不守恒时的可能解。
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来源期刊
The European Physical Journal C
The European Physical Journal C 物理-物理:粒子与场物理
CiteScore
8.10
自引率
15.90%
发文量
1008
审稿时长
2-4 weeks
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