论文标题
动力学尺度通量绳:动力学平衡模型的观测和应用
Kinetic-scale flux ropes: Observations and applications of kinetic equilibrium models
论文作者
论文摘要
具有螺旋场线和强核场的磁通绳是空间等离子体中的无处不在结构。最近,通过磁层磁层多尺度(MMS)航天器的高分辨率观测值鉴定了动力学量的通量绳索,由于其非理想的行为和内部结构,它们引起了很多关注。通量绳结构和动力学的详细研究需要开发逼真的动力学模型。在本文中,我们概括了一个平衡模型,以重建先前通过MMS观测值报道的动力学尺度磁通绳。在此重建中,同时再现了所有四个卫星的磁场和电子音调分布测量的关键特征。除了验证模型外,我们的结果还表明,先前归因于磁盘中不对称磁性拓扑的各向异性特征可以通过通量绳静止框架中的航天器运动来替代。
Magnetic flux ropes with helical field lines and strong core field are ubiquitous structures in space plasmas. Recently, kinetic-scale flux ropes have been identified by high-resolution observations from Magnetospheric Multiscale (MMS) spacecraft in the magnetosheath, which have drawn a lot of attention because of their non-ideal behavior and internal structures. Detailed investigation of flux rope structure and dynamics requires development of realistic kinetic models. In this paper, we generalize an equilibrium model to reconstruct a kinetic-scale flux rope previously reported via MMS observations. The key features in the magnetic field and electron pitch-angle distribution measurements of all four satellites are simultaneously reproduced in this reconstruction. Besides validating the model, our results also indicate that the anisotropic features previously attributed to asymmetric magnetic topologies in the magnetosheath can be alternatively explained by the spacecraft motion in the flux rope rest frame.