论文标题
发电机平均场效应在磁湍流中的有限时间响应
Finite-time response of dynamo mean-field effects in magnetorotational turbulence
论文作者
论文摘要
积聚圆盘湍流以及对大规模磁场的影响在一般而言,尤其是天体物理喷气机的发射中起着重要的作用。通过为全球长期模拟碟片启用全面的子网格描述,我们旨在进一步表征磁磁盘湍流的局部模拟中出现的传输系数。对于当前的研究,我们利用了测试场方法的时间依赖性版本,该方法对生成的湍流电动力(EMF)敏感,该曲线是对一组脉动背景场的响应。我们获得了传输系数的傅立叶光谱,这是振荡频率的函数。这些简单的响应函数可以很好地近似,从而描述了由于时间变化的平均磁场的有限时间积累。对于中间时间尺度(即略高于轨道频率),我们观察到与引起场相比,EMF的显着相位滞后。在空间中的非本地闭合关系上,我们先前的结果增强,并将其纳入合适的均值描述中,我们在这里简要勾勒出该描述,新框架将允许放弃对规模分离的限制性假设。
Accretion disc turbulence along with its effect on large-scale magnetic fields plays an important role in understanding disc evolution in general, and the launching of astrophysical jets in particular. Motivated by enabling a comprehensive sub-grid description for global long-term simulations of accretions discs, we aim to further characterize the transport coefficients emerging in local simulations of magnetorotational disc turbulence. For the current investigation, we leverage a time-dependent version of the test-field method, which is sensitive to the turbulent electromotive force (EMF) generated as a response to a set of pulsating background fields. We obtain Fourier spectra of the transport coefficients as a function of oscillation frequency. These are well approximated by a simple response function, describing a finite-time build-up of the EMF as a result of a time-variable mean magnetic field. For intermediate timescales (i.e., slightly above the orbital frequency), we observe a significant phase lag of the EMF compared to the causing field. Augmented with our previous result on a non-local closure relation in space, and incorporated into a suitable mean-field description that we briefly sketch out here, the new framework will allow to drop the restrictive assumption of scale separation.