Self-similar solutions of oscillatory reconnection: parameter study of magnetic field strength and background temperature

Luiz A. C. A. Schiavo, Gert J. J. Botha, James A. McLaughlin
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Abstract

Oscillatory reconnection is a specific type of time-dependent reconnection which involves periodic changes in the magnetic topology of a null point. The mechanism has been reported for a variety of magnetic field strengths and configurations, background temperatures and densities. All these studies report an oscillation in the current density at the null point, but also report a variety of periods, amplitudes and overall behaviors. We conduct a parametric study for equilibrium magnetic field strength and initial background temperature, solving 2D resistive MHD equations around a magnetic X-point. We introduce a parameter space for the ratio of internal-to-magnetic energy and find self-similar solutions for simulations where this ratio is below 0.1 (which represents a magnetically-dominated environment or, equivalently, a low-beta plasma). Self-similarity can be seen in oscillations in the current density at the null (including amplitude and period), Ohmic heating and the temperature generated via reconnection jets. The parameter space of energy ratios also allows us to contextualize previous studies of the oscillatory reconnection mechanism and bring those different studies together into a single unified understanding.
振荡重联的自相似解:磁场强度和背景温度的参数研究
振荡再连接是一种特定类型的随时间变化的再连接,它涉及空点磁拓扑结构的周期性变化。据报道,该机制适用于各种磁场强度和配置、背景温度和密度。所有这些研究都报告了空穴处电流密度的振荡,但也报告了各种周期、振幅和总体行为。我们对平衡磁场强度和初始背景温度进行了参数研究,求解了围绕磁 X 点的二维电阻 MHD 方程。我们引入了内能与磁能之比的参数空间,并在该比值低于 0.1(代表磁主导环境或低贝塔等离子体)的模拟中找到了自相似解。自相似性体现在空点处的电流密度振荡(包括振幅和周期)、欧姆加热以及通过再连接喷流产生的温度。能量比的参数空间也使我们能够将以前对振荡再连接机制的研究与背景联系起来,并将这些不同的研究整合为一个统一的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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