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Simulation study on nonlinear frequency shift of narrow band whistler-mode waves in a homogeneous magnetic field

机译:均匀磁场中窄带惠斯模式波的非线性频移仿真研究

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摘要

We study frequency variation of a coherent whistler-mode wave in a homogeneous magnetic field by a self-consistent simulation model. Simulation results show that an injected whistler-mode wave packet grows due to an instability driven by temperature anisotropy and the amplified wave packet triggers emissions with frequency shift during its propagation. We clarify that the resonant currents J(E) and J(B) due to the nonlinear wave-particle interaction play significant roles in both wave growth and frequency variation. Based on the simulation results, we show that the range of the frequency shift in a homogeneous system is quantitatively estimated by the trapping frequency V-T of trapped electrons; in a case that the original frequency of the wave packet is 0.62 Omega(e) and V-T = 4.05 x 10(-2)c, the lower and upper frequencies are estimated to be 0.565 Omega(e) and 0.685 Omega(e), respectively. The results of the present study reveal that the role of nonlinear trapping is significant in the elementary process of VLF triggered emissions in the equatorial region of the magnetosphere.
机译:我们通过自洽仿真模型研究相干哨声模式波在均匀磁场中的频率变化。仿真结果表明,由于温度各向异性驱动的不稳定性,注入的惠斯勒模式波包会增长,并且放大的波包在传播过程中会触发带有频移的发射。我们阐明,由于非线性波粒相互作用而产生的谐振电流J(E)和J(B)在波增长和频率变化中均起着重要作用。基于仿真结果,我们表明,均匀系统中频移的范围是由被俘获电子的俘获频率V-T定量估计的;在波包的原始频率为0.62 Omega(e)且VT = 4.05 x 10(-2)c的情况下,较低和较高的频率估计为0.565 Omega(e)和0.685 Omega(e),分别。本研究的结果表明,非线性陷阱的作用在磁层赤道区域的甚低频触发的基本过程中起着重要作用。

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