论文标题
由地球磁层中磁重连接触发的倾斜电子声波的证据
Evidence of oblique electron acoustic solitary waves triggered by magnetic reconnection in Earth's magnetosphere
论文作者
论文摘要
由最近对倾斜电子声波的磁层多尺度(MMS)观察的动机,我们通过利用还原性扰动技术来解决观察到的波的产生机理。非线性Zakharov-Kuznetsov(ZK)方程是用于由凉爽的,磁性的血浆,由凉爽的惯性背景电子,凉爽的惯性电子束,热惯性的上乳头上的高颗粒中的高颗粒,由$κ$ $ - 分布和固定离子代表。此外,使用小型K扰动扩展方法得出了不稳定性增长率。我们的发现表明,静电波轮廓的结构受到外部磁场,不受干扰的热,凉爽和电子束密度,倾斜角度和超热速率的显着影响。这样的参数也会影响不稳定性增长率。这项研究阐明了可能负责改变电子和离子分布函数的倾斜电子孤立波的特征,从而改变了磁重新连接过程。此外,通过血浆参数提高生长速率可能是异常电阻率的来源,可以提高磁重新连接速率。
Motivated by the recent Magnetospheric Multiscale (MMS) observations of oblique electron acoustic waves, we addressed the generation mechanism of the observed waves by utilizing the reductive perturbation technique. The nonlinear Zakharov-Kuznetsov (ZK) equation is derived for collisionless, magnetised plasma composed of cool inertial background electrons, the cool inertial electron beam, hot inertialess suprathermal electrons represented by a $κ$-distribution, and stationary ions. Moreover, the instability growth rate is derived by using the small-k perturbation expansion method. Our findings reveal that the structure of the electrostatic wave profile is significantly influenced by the external magnetic field, the unperturbed hot, cool, and electron beam densities, the obliquity angle, and the rate of superthermality. Such parameters also affect the instability growth rate. This study clarifies the characteristics of the oblique electron solitary waves that may be responsible for changing the electron and ion distribution functions, which alter the magnetic reconnection process. Moreover, increasing the growth rate with the plasma parameters could be a source of anomalous resistivity that enhances the rate of magnetic reconnection.