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Validation and benchmarking of two particle-in-cell codes for a glow discharge

机译:用于辉光放电的两个粒子内码的验证和基准测试

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摘要

The two particle-in-cell codes EDIPIC and LSP are benchmarked and validated for a parallel-plate glow discharge in helium, in which the axial electric field had been carefully measured, primarily to investigate and improve the fidelity of their collision models. The scattering anisotropy of electron-impact ionization, as well as the value of the secondaryelectron emission yield, are not well known in this case. The experimental uncertainty for the emission yield corresponds to a factor of two variation in the cathode current. If the emission yield is tuned to make the cathode current computed by each code match the experiment, the computed electric fields are in excellent agreement with each other, and within about 10% of the experimental value. The non-monotonic variation of the width of the cathode fall with the applied voltage seen in the experiment is reproduced by both codes. The electron temperature in the negative glow is within experimental error bars for both codes, but the density of slow trapped electrons is underestimated. A more detailed code comparison done for several synthetic cases of electron-beam injection into helium gas shows that the codes are in excellent agreement for ionization rate, as well as for elastic and excitation collisions with isotropic scattering pattern. The remaining significant discrepancies between the two codes are due to differences in their electron binary-collision models, and for anisotropic scattering due to elastic and excitation collisions.
机译:两种粒子 - 细胞码编码和LSP是基准测试和验证的氦气中的平行板辉光放电,其中轴向电场已经小心地测量,主要是为了研究和改善碰撞模型的保真度。电子碰撞电离的散射各向异性以及在这种情况下尚不熟知的Eccientelelec发射产率的各向异性。发射产率的实验性不确定性对应于阴极电流的两个变化的因子。如果调整发射产量以使每个代码计算的阴极电流与实验匹配,则计算的电场彼此非常一致,并且在实验值的约10%之内。两种代码再现阴极落下的阴极宽度的非单调变化与实验中所见的施加电压。负辉光中的电子温度在两个代码的实验误差条内,但是缓慢被捕获的电子的密度低估了。为氦气中的若干合成案例进行了更详细的码比较,以氦气向气体表示,该代码具有优异的电离速率协议,以及具有各向同性散射图案的弹性和激发碰撞。两种代码之间的剩余显着差异是由于其电子二进制碰撞模型的差异,以及由于弹性和激发碰撞引起的各向异性散射。

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