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Non-local mean field dynamo theory and magnetic fronts in galaxies

机译:非局部平均场发电机理论和星系中的磁锋

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In this article we address the problem of magnetic field generation and front propagation in turbulent electrically conducting fluids, involving the velocity with finite correlations times and small magnetic diffusivity. We suggest an integro-differential dynamo equation which involves the non-local terms for both the dynamo source a-term and turbulent transport of the mean magnetic field. We derive a set of formulas which allows us to determine the rate of magnetic front propagation in galaxies valid for arbitrary memory kernels. We illustrate the general results through the use of the exponential correlation functions for memory kernels and 'no-z' approximation. We find that the memory effects have strong influence on for both the growth rate and propagation speed. We perform numerical simulations of exterior front speed, and find that the transport memory essentially decreases the propagation rate. [References: 18]
机译:在本文中,我们解决了湍流导电流体中磁场产生和前沿传播的问题,该问题涉及具有有限相关时间和较小磁扩散率的速度。我们建议一个积分微分发电机方程,其中涉及发电机源a项和平均磁场的湍流传输的非局部项。我们导出了一组公式,这些公式使我们能够确定对任意内存内核有效的星系中磁锋的传播速率。我们通过将指数相关函数用于存储内核和“ no-z”逼近来说明一般结果。我们发现记忆效应对增长率和传播速度都具有强烈的影响。我们进行了外部前速度的数值模拟,发现运输记忆库实质上降低了传播速度。 [参考:18]

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