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对悬臂梁微机械光开关的机电特性进行了理论分析。利用机械和电学特性,导出了悬臂梁的弯曲量和所加的电压的解析关系,并给出阈值电压的计算公式。指出外加电压与梁的宽度无关,与梁的长度的平方成反比。悬臂梁尖端的弯曲量不能超出相邻电极间距的1/3。这些结论是悬臂梁微机械光开关设计和研制的直接依据。

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电子回旋共振等离子体化学气相淀积(ECR Plasma CVD)法淀积介质膜技术是制备性能优良的光电子器件光学膜和电介质膜的重要手段之一。该文报道了ECR Plamsa CVD法淀积介质膜的工艺以及介质膜的特性等。

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The semiconductor photonics and optoelectronics which have a great significance in the development of advanced high technology of information systems will be discussed in this paper. The emphasis will be put on the recent research carried out in our laboratory in enhanced luminescence from low dimensional materials such as SiGe/Si and Er-doped Si-rich SiO2/Si and Er-doped SixNy/Si. A ring shape waveguide structure, used to promote the effective absorption coefficient in PIN photodetector for 1.3 mu m wavelength and a resonant cavity enhanced structure, used to improve the quantum efficiency and response in heterostructure photo-transistor (HPT), are also proposed in this paper.

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探讨了在0.5Tm(Tm为材料熔点)温度附近一种氧化物粒子弥散强化的铁基合金中惰性气体离子辐照引起的组织结构变化.实验利用高能20Ne离子辐照材料样品至3个剂量水平.借助透射电子显微镜发现,即使在最高辐照剂量,材料的晶界处也没有发生空洞的加速生长,显著区别于相同辐照条件下传统铁基合金的组织结构变化.这个特点反映出氧化物粒子弥散强化合金具有在高温和高氦产生率的苛刻环境中(诸如在聚变堆内部)使用的潜力.晶界处空洞生长的抑制效应可归因于材料晶粒内部高密度的氧化物纳米颗粒的界面对惰性气体原子的有效俘获和对辐照缺陷的回复作用.