论文标题

时间依赖时间的数值求解器,从

Numerical solver for the time-dependent far-from-equilibrium Boltzmann equation

论文作者

Wais, Michael, Held, Karsten, Battiato, Marco

论文摘要

对强烈平衡状态的研究以及它们向热化的时间演变对于理解不断扩大的物理过程范围至关重要。我们提出了一种数值方法,该方法首次允许时间依赖时间的玻尔兹曼方程中最困难的部分的数值解:完整的散射项。具有任意分散的任何数量的带(和准粒子),任何数量的高阶散射通道(我们在这里显示四个腿散射:电子电子散射)都可以远离平衡处理。没有对人口做出的假设,所有保利 - 覆盖因子都包含在散射的相位项中。该方法可以直接连接到运输的确定性求解器。最终,最重要的是,该方法可以保留对任何分辨率的颗粒数,动量和能量的精确度,从而使时间演变的计算直至完全暖化。我们将这种方法应用于两个示例,即金属和一个半导体,并经过强烈平衡激光激发的热量。这两种情况是在迄今在许多近似下经过处理的文献中,可以从这些近似值中释放,并在相同的数值方法中直接解决。

The study of strongly out-of-equilibrium states and their time evolution towards thermalization is critical to the understanding of an ever widening range of physical processes. We present a numerical method that for the first time allows for the numerical solution of the most difficult part of the time-dependent Boltzmann equation: the full scattering term. Any number of bands (and quasiparticles) with arbitrary dispersion, any number of high order scattering channels (we show here four legs scatterings: electron-electron scattering) can be treated far from equilibrium. No assumptions are done on the population and all the Pauli-blocking factors are included in the phase-space term of the scattering. The method can be straightforwardly interfaced to a deterministic solver for the transport. Finally and most critically, the method conserves to machine precision the particle number, momentum and energy for any resolution, making the computation of the time evolution till complete thermalization possible. We apply this approach to two examples, a metal and a semiconductor, undergoing thermalization from a strongly out-of-equilibrium laser excitation. These two cases, which are in literature treated hitherto under a number of approximations, can be addressed free from those approximations and straightforwardly within the same numerical method.

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