Laboratory for Atmospheric and Space Physics (LASP), University of Colorado Boulder, Boulder, Colorado 80303, USA and Institute for Modeling Plasma, Atmospheres and Cosmic Dust, NASA/SSERVI, Moffet Field, California 94035, USA.
LPC2E, CNRS, Orléans 45071, France.
Phys Rev Lett. 2019 Aug 2;123(5):055101. doi: 10.1103/PhysRevLett.123.055101.
When a weakly outgassing comet is sufficiently close to the Sun, the formation of an ionized coma results in solar wind mass loading and magnetic field draping around its nucleus. Using a 3D fully kinetic approach, we distill the components of a generalized Ohm's law and the effective electron equation of state directly from the self-consistently simulated electron dynamics and identify the driving physics in the various regions of the cometary plasma environment. Using the example of space plasmas, in particular multispecies cometary plasmas, we show how the description for the complex kinetic electron dynamics can be simplified through a simple effective closure, and identify where an isotropic single-electron fluid Ohm's law approximation can be used, and where it fails.
当一颗微弱释放气体的彗星足够接近太阳时,形成的电离彗发会导致太阳风物质加载以及磁场缠绕在彗核周围。我们使用 3D 全动力学方法,直接从自洽模拟的电子动力学中提取广义欧姆定律和有效电子状态方程的分量,并确定彗星星际等离子体环境各个区域的驱动物理。我们以空间等离子体(特别是多组分彗星等离子体)为例,展示了如何通过简单的有效封闭来简化对复杂的动力学电子的描述,并确定在何处可以使用各向同性的单电子流体欧姆定律近似,以及在何处会失效。