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1)  time domain behavior
导体平面
2)  semiconductor planar microcavity
半导体平面微腔
1.
Using the transfer matrix scheme,the effects of DBR s growth sequence have been studied on the properties of semiconductor planar microcavity,in particular on the spatial position of the amplifier maximum of electric field and the mode selection properties of the photon field.
从光学传输矩阵方法出发 ,研究了分布布拉格反射器 (DBR)生长顺序的不同对半导体平面微腔中电场振幅极大值位置及整个微腔选频特性的影响 ;同时指出了 DBR对于λ0 / 2和λ0 腔不同情况的最佳生长模
3)  Charged conducting sphere
接地导体平面
4)  conducting half-plane
半无限大导体平面
5)  Semiconductor Planar Transformer
半导体平面变压器
6)  planar waveguide
平面波导
1.
Laser beam addition of planar waveguides with fractional self-imaging
分数自成像平面波导的光束组束
2.
In order to improve the detection sensitivity and increase the response speed of the biosensor,based on the theory of planar waveguide,the zone energies of the evanescent fields in the single mode and multimode of the planar optical waveguide were compared under the same condition by using the principle of the evanescent field applied to the biosensing field.
为提高生物传感探测的灵敏度和响应速度,基于平面光波导理论,运用消逝场原理在生物传感领域的应用,在相同条件下比较了平面波导单模和多模2种模式下消逝场区域能量的大小,并且用VC和M atlab工具模拟论证单模能量高于多模。
3.
GeO2-SiO2 planar waveguide technology is reviewd in this paper in terms of its history andprospects and application in integration optics.
综合论述了GeO_2-SiO_2薄膜平面波导的发展历史和前景以及在集成光学中的应用。
补充资料:半导体导电性(见半导体的导电与电荷输运)


半导体导电性(见半导体的导电与电荷输运)
electrical conductivity of semiconductor

  半导体导电性eleetr、ea一conou以,v:‘,_‘ 一J一“。,瓜米早伙鼓幕由乌教着给话_
  
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