论文标题
电子束在弱磁化等离子体中诱导的等离子体发射
Plasma Emission Induced By Electron Beam in Weakly Magnetized Plasmas
论文作者
论文摘要
先前关于光束驱动的等离子体发射过程的研究主要是针对非磁化等离子体进行的。在这里,我们提出了全动力电磁粒子中的模拟,以研究太阳能电晕条件的弱磁化等离子体中的这种过程。激发的主要模式是通过经典颠簸的尾巴不稳定性的梁 - 兰蒙(BL)模式。其他模式包括惠斯勒(W)模式受到电子回旋共振不稳定性的激发,广义的langmuir(GL)波,其中包括具有较小波数$ k $的量子Z模式组件和具有较大$ k $的热量Langmuir组件,以及较大的langmuir组件,以及较大的(F)和谐波(H)(H)plasma sussissions of plasma sissission。对电子和质子的不同质量和温度比的进一步模拟表明,GL模式和两个逃逸模式(F和H)在强度时与BL模式正相关,从而支持它们通过涉及BL模式的非线性波浪波耦合过程激发。我们建议主要过程是主要BL模式的衰减。这与等离子体发射的标准理论一致。然而,不能完全排除Z+W $ \ rightarrow $ O-F聚合过程的合并过程。
Previous studies on the beam-driven plasma emission process were done mainly for unmagnetized plasmas. Here we present fully-kinetic electromagnetic particle-in-cell simulations to investigate such process in weakly-magnetized plasmas of the solar corona conditions. The primary mode excited is the beam-Langmuir (BL) mode via the classical bump-on-tail instability. Other modes include the whistler (W) mode excited by the electron cyclotron resonance instability, the generalized Langmuir (GL) waves that include a superluminal Z-mode component with smaller wave number $k$ and a thermal Langmuir component with larger $k$, and the fundamental (F) and harmonic (H) branches of plasma emission. Further simulations of different mass and temperature ratios of electrons and protons indicate that the GL mode and the two escaping modes (F and H) correlate positively with the BL mode in intensity, supporting that they are excited through nonlinear wave-wave coupling processes involving the BL mode. We suggest that the dominant process is the decay of the primary BL mode. This is consistent with the standard theory of plasma emission. Yet, the other possibility of the Z+W$\rightarrow$O--F coalescing process for the F emission cannot be ruled out completely.