首页> 外文期刊>The European physical journal, B. Condensed matter physics >Statistical mechanics and Vlasov equation allow for a simplified Hamiltonian description of Single-Pass Free Electron Laser saturated dynamics
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Statistical mechanics and Vlasov equation allow for a simplified Hamiltonian description of Single-Pass Free Electron Laser saturated dynamics

机译:统计力学和Vlasov方程可简化单次自​​由电子激光饱和动力学的哈密顿量描述

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摘要

A reduced Hamiltonian formulation which reproduces the saturated regime of a Single Pass Free Electron Laser, around perfect tuning, is here discussed. Asymptotically, N-m particles are found to organize in a dense cluster, that evolves as an individual massive unit. The remaining particles fill the surrounding uniform sea, spanning a finite portion of phase space, approximately delimited by the average momenta omega(+) and omega(-). We propose a theoretical framework in which the external parameters N-m, omega(+) and omega(-) are self-consistently determined. To this aim, we make use of a statistical mechanics treatment of the Vlasov equation, that governs the initial field amplification process. Simulations of the reduced dynamics are shown to successfully capture the oscillating regime observed within the original N-body picture.
机译:本文讨论了一种简化的哈密顿量公式,该公式在完美调谐的情况下再现了单次通过电子激光器的饱和状态。渐近地,发现N-m个粒子以密集簇的形式组织,该簇以单个大质量单位的形式演化。剩余的粒子充满了周围均匀的海洋,跨越了相空间的有限部分,大约由平均动量ω(+)和ω(-)界定。我们提出了一个理论框架,其中外部参数N-m,omega(+)和omega(-)是自洽确定的。为此,我们利用Vlasov方程的统计力学方法来控制初始场放大过程。降低的动力学模拟显示成功捕获了原始N体图片中观察到的振荡状态。

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