Keenan Brett D, Ford Alexander L, Medvedev Mikhail V
Department of Physics and Astronomy, University of Kansas, Lawrence, Kansas 66045, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Sep;92(3):033104. doi: 10.1103/PhysRevE.92.033104. Epub 2015 Sep 14.
Plasmas with electromagnetic fields turbulent at sub-Larmor scales are a feature of a wide variety of high-energy-density environments and are essential to the description of many astrophysical and laboratory plasma phenomena. Radiation from particles, whether they are relativistic or nonrelativistic, moving through small-scale magnetic turbulence has spectral characteristics distinct from both synchrotron and cyclotron radiation. The radiation, carrying information on the statistical properties of the magnetic turbulence, is also intimately related to the particle diffusive transport. We have investigated, both theoretically and numerically, the transport of nonrelativistic and trans-relativistic particles in plasmas with high-amplitude isotropic sub-Larmor-scale magnetic turbulence, and its relation to the spectra of radiation simultaneously produced by these particles. Consequently, the diffusive and radiative properties of plasmas turbulent on sub-Larmor scales may serve as a powerful tool to diagnosis laboratory and astrophysical plasmas.
具有亚拉莫尔尺度湍流电磁场的等离子体是各种高能量密度环境的一个特征,对于描述许多天体物理和实验室等离子体现象至关重要。粒子(无论相对论性还是非相对论性)在小尺度磁湍流中运动时发出的辐射具有与同步辐射和回旋辐射都不同的光谱特征。这种携带磁湍流统计特性信息的辐射也与粒子扩散输运密切相关。我们从理论和数值两方面研究了非相对论性和跨相对论性粒子在具有高振幅各向同性亚拉莫尔尺度磁湍流的等离子体中的输运,以及它与这些粒子同时产生的辐射光谱的关系。因此,亚拉莫尔尺度湍流等离子体的扩散和辐射特性可作为诊断实验室和天体物理等离子体的有力工具。