首页> 外文会议>International Solar Wind Conference >Heating and Acceleration of Solar Wind Ions by Turbulent Wave Spectrum in Inhomogeneous Expanding Plasma
【24h】

Heating and Acceleration of Solar Wind Ions by Turbulent Wave Spectrum in Inhomogeneous Expanding Plasma

机译:湍流波谱在不均匀膨胀等离子体中的湍流波谱加热和加速

获取原文

摘要

Near the Sun (<10R_s) the acceleration, heating, and propagation of the solar wind are likely affected by the background inhomogeneities of the magnetized plasma. The heating and the acceleration of the solar wind ions by turbulent wave spectrum in inhomogeneous plasma is studied using a 2.5D hybrid model. The hybrid model describes the kinetics of the ions, while the electrons are modeled as massless neutralizing fluid in an expanding box approach. Turbulent magnetic fluctuations dominated by power-law frequency spectra, which are evident from in-situ as well as remote sensing measurements, are used in our models. The effects of background density inhomogeneity across the magnetic field on the resonant ion heating are studied. The effect of super-Alfvénic ion drift on the ion heating is investigated. It is found that the turbulent wave spectrum of initially parallel propagating waves cascades to oblique modes, and leads to enhanced resonant ion heating due to the inhomogeneity. The acceleration of the solar wind ions is achieved by the parametric instability of large amplitude waves in the spectrum, and is also affected by the inhomogeneity. The results of the study provide the ion temperature anisotropy and drift velocity temporal evolution due to relaxation of the instability. The non-Maxwellian velocity distribution functions (VDFs) of the ions are modeled in the inhomogeneous solar wind plasma in the acceleration region close to the Sun.
机译:在太阳(<10R_S)附近的加速度,加热和太阳风的传播可能受到磁化等离子体的背景不均匀性的影响。使用2.5D杂种模型研究了湍流波谱通过湍流波谱的加热和加速度。混合模型描述了离子的动力学,而电子以扩展箱方法为无麻环中和流体。在我们的型号中使用了由幂律频率谱支配的湍流磁波动,这是从原位的状态明显的,在我们的型号中使用了遥感测量。研究了背景密度不均匀性在谐振离子加热上的磁场的影响。研究了超级 - alfvénic离子漂移对离子加热的影响。结果发现,最初并联传播波的湍流波谱级联到倾斜模式,并导致由于不均匀性引起的谐振离子加热。通过在光谱中的大幅度波的参数稳定性来实现太阳风离子的加速度,并且也受到不均匀性的影响。该研究的结果提供了由于放松不稳定性而导致的离子温度各向异性和漂移速度时间进化。离子的非最大珀斯速度分布功能(VDF)在靠近太阳的加速区域中的不均匀太阳风量子中进行建模。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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