...
首页> 外文期刊>Physics of plasmas >Resonance zones and quasi-linear diffusion coefficients for radiation belt energetic electron interaction with oblique chorus waves in the Dungey magnetosphere
【24h】

Resonance zones and quasi-linear diffusion coefficients for radiation belt energetic electron interaction with oblique chorus waves in the Dungey magnetosphere

机译:Dungey磁层中辐射带高能电子与斜合唱波相互作用的共振带和准线性扩散系数

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The resonance regions for resonant interactions of radiation belt electrons with obliquely propagating whistler-mode chorus waves are investigated in detail in the Dungey magnetic fields that are parameterized by the intensity of uniform southward interplanetary magnetic field (IMF) Bz or, equivalently, by the values of D (M / B _(z,0)) ~(1/3) (where M is the magnetic moment of the dipole and B z, 0 is the uniform southward IMF normal to the dipole's equatorial plane). Adoption of background magnetic field model can considerably modify the determination of resonance regions. Compared to the results for the case of D=50 (very close to the dipole field), the latitudinal coverage of resonance regions for 200 keV electrons interacting with chorus waves tends to become narrower for smaller D-values, regardless of equatorial pitch angle, resonance harmonics, and wave normal angle. In contrast, resonance regions for 1 MeV electrons tend to have very similar spatial lengths along the field line for various Dungey magnetic field models but cover different magnetic field intervals, indicative of a strong dependence on electron energy. For any given magnetic field line, the resonance regions where chorus-electron resonant interactions can take place rely closely on equatorial pitch angle, resonance harmonics, and kinetic energy. The resonance regions tend to cover broader latitudinal ranges for smaller equatorial pitch angles, higher resonance harmonics, and lower electron energies, consistent with the results in Ni and Summers [Phys. Plasmas 17, 042902, 042903 (2010)]. Calculations of quasi-linear bounce-averaged diffusion coefficients for radiation belt electrons due to nightside chorus waves indicate that the resultant scattering rates differ from using different Dungey magnetic field models, demonstrating a strong dependence of wave-induced electron scattering effect on the adoption of magnetic field model. Our results suggest that resonant wave-particle interaction processes should be implemented into a sophisticated, accurate global magnetic field model to pursue comprehensive and complete models of radiation belt electron dynamics.
机译:在Dungey磁场中详细研究了辐射带电子与倾斜传播的惠斯勒模式合唱波的共振相互作用的共振区域,该区域由均匀的南向星际磁场(IMF)Bz的强度或等效地由以下值确定D(M / B _(z,0))〜(1/3)(M是偶极子的磁矩和B z,0是垂直于偶极子赤道平面的均匀南向IMF)的关系式。采用背景磁场模型可以极大地改变共振区域的确定。与D = 50(非常接近偶极子场)情况下的结果相比,对于200 keV电子与合唱波相互作用的共振区域的纬度覆盖范围倾向于随着较小的D值而变窄,而与赤道俯仰角无关,共振谐波,和波法向角。相反,对于各种Dungey磁场模型,1 MeV电子的共振区域趋向于沿着磁力线具有非常相似的空间长度,但覆盖了不同的磁场间隔,这表明对电子能量的强烈依赖性。对于任何给定的磁场线,可以发生合唱-电子共振相互作用的共振区域密切依赖于赤道俯仰角,共振谐波和动能。对于较小的赤道俯仰角,较高的谐振谐波和较低的电子能量,谐振区域倾向于覆盖更宽的纬度范围,这与Ni和Summers的结果一致。 Plasmas 17,042902,042903(2010)]。夜间合唱波对辐射带电子的准线性反弹平均扩散系数的计算表明,所产生的散射率与使用不同的Dungey磁场模型不同,表明波诱导的电子散射效应对磁场的采用有很大的依赖性。现场模型。我们的结果表明,应将共振波-粒子相互作用过程实现为复杂,精确的全局磁场模型,以追求辐射带电子动力学的全面而完整的模型。

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