论文标题
在前换瞬变处的强烈惠斯勒模式波:波粒谐振相互作用的特征和状态
Intense whistler-mode waves at foreshock transients: characteristics and regimes of wave-particle resonant interaction
论文作者
论文摘要
血浆流动在冲击时流动的热和加热会导致不稳定的带电粒子分布,从而产生广泛的电磁波。这些波反过来可以进一步加速和散射能量的颗粒。因此,波的特性及其对波颗粒相互作用的影响对于在冲击环境中建模能量粒子动力学至关重要。由电子热通量或温度各向异性激发的惠斯勒模式波自然出现在冲击和预击瞬变附近。结果,它们通常可以与超透 - 热电子相互作用。这种瞬态核心和大波幅度的典型背景磁场可能会导致这种相互作用进入非线性状态。在这项研究中,我们介绍了在围绕土弓电击周围的前锁瞬变处的惠斯勒模式波的统计表征,因为它们在广泛的上游条件下观察到它们。我们发现,其中很大一部分足够强烈,并且有一致的保留非线性治疗。对背景磁场梯度和强烈的惠斯勒波幅度的大量观察表明,相位陷阱是一种非常有效的不均匀等离子体电子加速度的机制,可能是原因。我们讨论了我们发现对电子加速度和天体物理冲击环境中电子加速度的含义。
Thermalization and heating of plasma flows at shocks result in unstable charged-particle distributions which generate a wide range of electromagnetic waves. These waves, in turn, can further accelerate and scatter energetic particles. Thus, the properties of the waves and their implication for wave-particle interactions are critically important for modeling energetic particle dynamics in shock environments. Whistler-mode waves, excited by the electron heat flux or a temperature anisotropy, arise naturally near shocks and foreshock transients. As a result, they can often interact with supra-thermal electrons. The low background magnetic field typical at the core of such transients and the large wave amplitudes may cause such interactions to enter the nonlinear regime. In this study, we present a statistical characterization of whistler-mode waves at foreshock transients around Earth bow shock, as they are observed under a wide range of upstream conditions. We find that a significant portion of them are sufficiently intense and coherent to warrant nonlinear treatment. Copious observations of background magnetic field gradients and intense whistler wave amplitudes suggest that phase trapping, a very effective mechanism for electron acceleration in inhomogeneous plasmas, may be the cause. We discuss the implications of our findings for electron acceleration in planetary and astrophysical shock environments.