论文标题

蒙特卡洛模拟电子传输在AR的空间调制电场中的共振效果,n $ _2 $及其混合物

Monte Carlo simulation of resonance effects of electron transport in a spatially modulated electric field in Ar, N$_2$ and their mixtures

论文作者

Albert, A., Bošnjaković, D., Dujko, S., Donkó, Z.

论文摘要

众所周知,在降低电场的“中间”值$ e/n $的“中间”值以$ e/n $的“中间”值处发生,在贵重气体中均匀电场的影响下,电子的分布函数的放松在贵族气体中的影响。我们研究了AR和N $ _2 $气体的电子的传输,以及以这种$ E/N $值的混合物($ \ sim $ 10-40 TD)的混合物。在简要讨论均匀电​​场中放松的基本情况之后,工作的主要部分集中在电场中运输的性质,该特性在有限区域内,该电场在有限的区域内遵守周期性的边界。平均速度,平均能量和电子的密度,激发通道的重要性以及电子能量分布函数的空间分布是从蒙特卡洛模拟的各种计算结构域,在不同的平均值和减少电场调节的不同平均值下的各个平均值。在低调下,平均速度和平均能量的空间曲线几乎是谐波,但是它们相对于电场扰动的相对于参数的函数表现出复杂的行为。随着调制的增加,观察到这些轮廓的较高谐波含量的增加,并且在发生电场逆转的高调制下,我们观察到大量电子群体的捕获。还检查了将分子气(N $ _2 $)混合对AR对运输特性的影响。观察到以高N $ _2 $混合浓度和长空间域的过渡到本地运输。

The relaxation of the distribution function of the electrons drifting under the influence of a homogeneous electric field in noble gases is known to take place over an extended spatial domain at `intermediate' values of the reduced electric field, $E/N$. We investigate the transport of electrons in Ar and N$_2$ gases, as well as in their mixtures at such $E/N$ values ($\sim$ 10-40 Td). After discussing briefly the basic scenario of relaxation in a homogeneous electric field, the major part of work concentrates on the properties of transport in an electric field that is spatially modulated within a finite region that obeys periodic boundaries. The spatial distribution of the mean velocity, the mean energy, and the density of the electrons, the importance of the excitation channels, as well as the electron energy distribution function are obtained from Monte Carlo simulations for various lengths of the computational domain, at different mean values and degrees of modulation of the reduced electric field. At low modulations, the spatial profiles of the mean velocity and mean energy are nearly harmonic, however their phases with respect to the electric field perturbation exhibit a complex behaviour as a function of the parameters. With increasing modulation, an increasing higher harmonic content of these profiles is observed and at high modulations where an electric field reversal occurs, we observe trapping of a significant population of the electrons. The effect of mixing a molecular gas, N$_2$, to Ar on the transport characteristics is also examined. Transition to local transport at high N$_2$ admixture concentrations and long spatial domains is observed.

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