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Theory of laser wakes in plasma channels

机译:等离子体通道中的激光唤醒理论

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Excitation of accelerating modes in transversely inhomogeneous plasma channels is considered as an initial value problem. Discrete eigenmodes are supported by plasma channels with sharp density gradients. These eigenmodes are collisionlessly damped as the gradients are smoothed. Using collisionless Landau damping as the analogy, the existence and damping of these "quasi-modes" is studied by constructing and analytically continuing the causal Green's function of wake excitation into the lower half of the complex frequency plane. Electromagnetic nature of the plasma wakes in the channel makes their excitation nonlocal. This results in the algebraic decay of the fields with time due to phase-mixing of plasma oscillations with spatially-varying frequencies. Characteristic decay rate is given by the mixing time tau(m), which corresponds to the dephasing of two plasma fluid elements separated by the collisionless skin depth. For wide channels analytic expressions for the field evolution are derived. Implications for electron acceleration in plasma channels are discussed. (C) 1999 American Institute of Physics. [S1070-664X(99)00902-7]. [References: 44]
机译:横向不均匀等离子体通道中的加速模式的激发被认为是一个初始值问题。离散本征模式由具有陡峭密度梯度的等离子通道支持。这些本征模随着梯度的平滑而无冲突地衰减。以无碰撞Landau阻尼为类比,通过构造和分析将激磁的因果格林函数推广到复频率平面的下半部分,研究了这些“准模式”的存在和阻尼。通道中等离子体苏醒的电磁特性使它们的激发成为非局部的。由于具有空间变化频率的等离子体振荡的相位混合,这导致了场的代数衰减。特征衰减率由混合时间tau(m)给出,该时间对应于被无碰撞趋肤深度分开的两个血浆流体元素的移相。对于宽通道,导出了场演化的解析表达式。讨论了等离子体通道中电子加速的含义。 (C)1999美国物理研究所。 [S1070-664X(99)00902-7]。 [参考:44]

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