...
首页> 外文期刊>The Astrophysical journal >Ion Heating Resulting from the Deceleration of Alpha Particles by a Proton-alpha Drift Instability in a Nonuniform Solar-wind Plasma
【24h】

Ion Heating Resulting from the Deceleration of Alpha Particles by a Proton-alpha Drift Instability in a Nonuniform Solar-wind Plasma

机译:在非均匀太阳风等离子体中由质子-α漂移不稳定性对α粒子的减速导致的离子加热

获取原文
           

摘要

The deceleration of alpha particle observed in the fast solar wind can contribute to the plasma heating between 0.3 and 1 au. The observational data suggest that the energy released from the deceleration has to be channeled to perpendicular heating of the protons. A possible mechanism of the energy conversion is a proton-alpha drift instability. We present hybrid numerical simulations of this instability in a warm plasma with particle-in-cell ions and a neutralizing electron fluid. The parallel temperature of the alpha particles is assumed to be larger than the perpendicular temperature. This sense of the anisotropy makes parallel-propagating fast magnetosonic waves the most easily excited modes. For typical ion beta values at 0.3 to 1 au, we find that the instability does not produce evident perpendicular heating of the protons if the initial background plasma is uniform. The lack of the heating is related to inefficient cyclotron interaction of the protons with the parallel-propagating fast modes. However, the background plasma in the solar wind is unlikely to be uniform. We consider the background variations across the mean magnetic field in the form of single or multiple equilibrium structures. The inhomogeneity modifies the unstable waves by making them oblique. Furthermore, their wavenumber spectrum extends to perpendicular wavenumbers of the order of the inverse proton gyroradius. Such waves can interact with the protons more efficiently. We show that significant and preferentially perpendicular heating of the protons is present in the nonuniform plasma.
机译:在快速的太阳风中观察到的α粒子的减速会导致等离子加热在0.3到1 au之间。观测数据表明,减速所释放的能量必须传导至质子的垂直加热。能量转换的可能机制是质子-α漂移不稳定性。我们目前在具有细胞内粒子离子和中和电子流体的温暖等离子体中这种不稳定性的混合数值模拟。假定α粒子的平行温度大于垂直温度。这种各向异性使平行传播的快速磁声波成为最容易激发的模式。对于0.3至1 au的典型离子β值,我们发现如果初始背景等离子体是均匀的,则不稳定性不会产生明显的质子垂直加热。缺乏加热与质子与平行传播的快速模式的回旋加速器相互作用不充分有关。但是,太阳风中的背景等离子体不太可能是均匀的。我们以单个或多个平衡结构的形式考虑整个平均磁场的背景变化。不均匀性通过使不稳定波倾斜来改变不稳定波。此外,它们的波数谱扩展到反质子回旋半径量级的垂直波数。这样的波可以更有效地与质子相互作用。我们表明,质子的显着且优先垂直加热存在于非均匀等离子体中。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号