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1)  surface polarization
表面极化
1.
The influences of the surface polarization on the threshold voltage and the saturation voltage are investigated analytically.
考虑挠曲电极化,但不考虑界面上离子选择吸附产生的极化,文章详细讨论了表面极化P_s对平行向列液晶盒阈值电压和饱和电压的影响。
2)  Surface polaron
表面极化子
1.
In this paper,the temperature dependence of the acoustic deformation surface polaron,which is in crystals as above,is studied by using linear-combination-operator method.
本文采用线性组合算符方法 ,导出了极性晶体中声学形变势表面极化子的振动频率和有效哈密顿量。
2.
Sak, Evans and Mills studied theoretically the surface polaron in polar crystals for the first time.
研究半无限晶体中表面极化子的特性。
3.
In this paper, the properties of the surface polaron of interacting with the deformation potential in polar crystals, which has a weak coupling with surface acoustic phonon and a strong coupling with surface optical phonons, are studied.
研究电子与SO声子耦合强,与SA声子耦合弱的极性晶体中与形变势相互作用的表面极化子的性质。
3)  surface magnetopolaron
表面磁极化子
1.
The properties of the surface magnetopolaron in polar crystals were studie.
研究极性晶体中表面磁极化子的特性。
2.
An expressions for the self trapping energy of the surface magnetopolaron as a function of the depth from the crystal surface, magnetic field and temperature were derived by using Huybrechts' linear combination operator and variational method.
采用Huybrechts的线性组合算符法和变分法 ,研究了晶格热振动对磁场中半无限极性晶体内电子与表面光学 (SO)声子强耦合、与体纵光学 (LO)声子弱耦合体系的影响 ,得到了作为距离晶体表面的深度、磁场和温度函数的表面磁极化子的自陷能 。
3.
The vibration frequency and the cyclotron-resonance mass of the strong and weak-coupling surface magnetopolaron are derived by using improved linear combination operator method.
采用改进了的线性组合算符分别导出强、弱耦合情形下表面磁极化子的振动频率和回旋共振质量。
4)  surface polaritons
表面极化激元
1.
On the base of the electromagnetic fields of the surface polaritons,the existing region and the dispersion relations of the surface polaritons of a semiinfinite uniaxially anisotropic left-handed material are studied.
根据表面极化激元的电磁场,讨论了p偏振和s偏振情况下,单轴各向异性半无限左手化材料中的表面极化激元的存在区域,以及表面极化激元的色散关系。
5)  polarization selective surface
极化选择表面
6)  surface-passivated diode
表面钝化二极管
补充资料:超极化


超极化


静息电位差值增大的状态。超极化的产生使膜电位距阈电位的差值增大,细胞膜的兴奋性下降。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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