Hydrodynamic fluctuations and topological susceptibility in chiral magnetohydrodynamics

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY SciPost Physics Pub Date : 2024-08-09 DOI:10.21468/scipostphys.17.2.042
Arpit Das, Nabil Iqbal, Napat Poovuttikul
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Abstract

Chiral magnetohydrodynamics is devoted to understanding the late-time and long-distance behavior of a system with an Adler-Bell-Jackiw anomaly at finite temperatures. The non-conservation of the axial charge is determined by the topological density $\vec{E} \cdot \vec{B}$; in a classical hydrodynamic description this decay rate can be suppressed by tuning the background magnetic field to zero. However it is in principle possible for thermal fluctuations of $\vec{E} \cdot \vec{B}$ to result in a non-conservation of the charge even at vanishing $B$-field; this would invalidate the classical hydrodynamic effective theory. We investigate this by computing the real-time susceptibility of the topological density at one-loop level in magnetohydrodynamic fluctuations, relating its low-frequency limit to the decay rate of the axial charge. We find that the frequency-dependence of this susceptibility is sufficiently soft as to leave the axial decay rate unaffected, validating the classical hydrodynamic description. We show that the susceptibility contains non-analytic frequency-dependence which is universally determined by hydrodynamic data. We comment briefly on possible connections to the recent formulation of the ABJ anomaly in terms of non-invertible symmetry.
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手性磁流体动力学中的流体动力波动和拓扑易感性
手性磁流体力学致力于理解在有限温度下具有阿德勒-贝尔-贾基异常的系统的晚期和长程行为。轴向电荷的非守恒性由拓扑密度 $\vec{E} 决定。\cdot \vec{B}$;在经典流体力学描述中,可以通过将背景磁场调至零来抑制这一衰减率。然而,$\vec{E} \cdot \vec{B}$的热波动原则上是可能的。\cdot \vec{B}$会导致电荷不守恒,甚至在$B$场消失时也是如此;这将使经典流体力学有效理论失效。我们通过计算磁流体动力学波动中拓扑密度在单圈水平上的实时易感性来研究这个问题,并将其低频极限与轴电荷的衰减率联系起来。我们发现,这种易感性的频率依赖性足够柔和,使轴向衰减率不受影响,从而验证了经典流体力学描述。我们表明,这种易感性包含非解析频率依赖性,而这种频率依赖性是由流体力学数据普遍决定的。我们简要评论了与最近用非不可逆对称性表述 ABJ 异常的可能联系。
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来源期刊
SciPost Physics
SciPost Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
8.20
自引率
12.70%
发文量
315
审稿时长
10 weeks
期刊介绍: SciPost Physics publishes breakthrough research articles in the whole field of Physics, covering Experimental, Theoretical and Computational approaches. Specialties covered by this Journal: - Atomic, Molecular and Optical Physics - Experiment - Atomic, Molecular and Optical Physics - Theory - Biophysics - Condensed Matter Physics - Experiment - Condensed Matter Physics - Theory - Condensed Matter Physics - Computational - Fluid Dynamics - Gravitation, Cosmology and Astroparticle Physics - High-Energy Physics - Experiment - High-Energy Physics - Theory - High-Energy Physics - Phenomenology - Mathematical Physics - Nuclear Physics - Experiment - Nuclear Physics - Theory - Quantum Physics - Statistical and Soft Matter Physics.
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