ionized impurity scattering 离化杂质散射
neutral impurity scattering 中性杂质散射
ionized impurity scattering mobility 电离杂质散射迁移率
Fe dissolved in the Cu matrix will make an great impurity scattering contribution to the resistivity.
分析了导电性机理,认为主要是界面散射电阻率和杂质散射电阻率的作用。
参考来源 - 形变Cu·2,447,543篇论文数据,部分数据来源于NoteExpress
With increasing doping concentration, the impact of neutral impurity scattering becomes more significant.
随着掺杂浓度的增加,中性杂质散射作用增强。
Our results are as follows:(1) The Feymann rules are obtained for the effects of nonmagnetic impurity scattering in theDDW state.
得到的主要结果有两个:(1)在研究非磁性杂质散射效应时,建立了关于非磁性杂质散射的费曼图规则。
In our simulation model, the scattering mechanisms include acoustic phonon scattering, polar optical phonon scattering, and ionized impurity scattering and so on.
模拟中包含的散射机理主要有声学声子散射、极性光学声子散射、电离杂质散射等。
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