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Energetics of turbulence generated by chiral MHD dynamos

机译:手性MHD发电机产生的湍流能量学

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An asymmetry in the number density of left- and right-handed fermions is known to give rise to a new term in the induction equation that can result in a dynamo instability. At high temperatures, when a chiral asymmetry can survive for long enough, this chiral dynamo instability can amplify magnetic fields efficiently, which in turn drive turbulence via the Lorentz force. While it has been demonstrated in numerical simulations that this chiral magnetically driven turbulence exists and strongly affects the dynamics of the magnetic field, the details of this process remain unclear. The goal of this paper is to analyse the energetics of chiral magnetically driven turbulence and its effect on the generation and dynamics of the magnetic field using direct numerical simulations. We study these effects for different initial conditions, including a variation of the initial chiral chemical potential and the magnetic Prandtl number, . In particular, we determine the ratio of kinetic to magnetic energy, , in chiral magnetically driven turbulence. Within the parameter space explored in this study, reaches a value of approximately 0.064–0.074–independently of the initial chiral asymmetry and for . Our simulations suggest, that decreases as a power law when increasing by decreasing the viscosity. While the exact scaling depends on the details of the fitting criteria and the Reynolds number regime, an approximate result of is reported. Using the findings from our numerical simulations, we analyse the energetics of chiral magnetically driven turbulence in the early Universe.
机译:已知左手和右手费粒度的数量密度的不对称性,以产生可能导致发电机不稳定性的感应式中的新术语。在高温下,当手性不对称足够长时,这种手性发电机不稳定性可以有效地放大磁场,这又通过洛伦兹力转动湍流。虽然已经在数值模拟中证明了这种手续磁驱动湍流并强烈影响磁场的动态,但该过程的细节仍不清楚。本文的目的是分析手性磁驱动湍流的能量,以及使用直接数值模拟的磁场的产生和动力学的影响。我们研究了对不同初始条件的这些效果,包括初始手性化学电位和磁性PRANDTL数的变化。特别是,我们确定动力学与磁能的比例,在手性磁力驱动的湍流中。在本研究探索的参数空间内,仅达到约0.064-0.074-0.064-0.074-in-injectinal的初始手性不对称性和。我们的模拟建议,通过降低粘度时,随着幂律而减少。虽然确切的缩放取决于拟合标准的细节和雷诺数方案,但报告了近似的结果。从我们的数值模拟中使用调查结果,我们分析了早期宇宙中手性磁力驱动湍流的能量。

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