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1)  Electro-optic switch
电光开关
1.
Simulation electro-optic switch of plasma-electrode Pockel scells driven by one-pulse process;
等离子体电极普克尔盒电光开关单脉冲过程数值模拟
2.
Simulation and Optimization of Polymer Directional Coupled Electro-optic Switches;
聚合物定向耦合电光开关的模拟和优化
3.
A one-dimensional numerical model for analyzing helium discharging of electro-optic switch driven by single-pulse process is proposed based on its microscopic physical mechanism.
根据单脉冲过程电光开关气体放电的微观物理过程,提出了氦气放电的一维数值模型。
2)  electrooptical switch
电光开关
1.
Being different with the regular plasma electrode electrooptical switch,the one-pulse-process(OPP) driving electrooptical switch is driven only through the positive and negative switching pulses with relatively high voltage,without isolated large current plasma generator.
用于高功率惯性约束聚变(ICF)激光驱动器的大口径电光开关均采用等离子体电极泡克耳斯盒。
2.
The impact of thermooptical effect on a 2×2 electrooptical switch in silicon on insulators(SOI) has been analyzed in this paper.
分析了 SOI(silicon- on- insulator) 2× 2电光开关工作时热光效应对等离子色散效应的影响。
3)  Electro-optical switch
电光开关
1.
The large aperture KDP electro-optical switch is a key unit for the new high-power laser multi-pass amplification system.
大口径KDP电光开关是新一代高功率激光器多程放大系统的关键部件。
4)  electro optical switch
电光开关
1.
In this paper, the approaches and issues of parallel drive for PEPC electro optical switches are described.
采用并联驱动技术有利于实现等离子体电极普克尔盒电光开关小型化和降低成本,并可提高激光系统可靠性和稳定性。
5)  photoelectric switch
光电开关
1.
Standardizing of the photoelectric switch in the high accurate large shaft measurement system by using the rolling-wheel method;
大轴滚轮测量系统中光电开关特性标定
2.
Photoelectric switch based on pulse-superposition technology;
使用脉冲重合技术的红外光电开关
3.
Research of informational photoelectric switch based on laser and remote control technology;
基于激光与远程控制技术的信息型光电开关综述
6)  photoelectrical switch
光电开关
补充资料:材料电光效应
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性质:某些材料当受外加电场作用后,其光学介电性能改变的现象。外加电场可以是静电场、微波电场,也可以是光学电磁场。一些晶体电光作用基本上来源于电子;另一些晶体中电光作用与振荡模式有关。电光效应在有些情况下随外加电场而呈线性变化;另一些情况下则随场强呈二次方变化。重要的电光材料有铌酸锂、钽酸锂(焦铌酸钙)、磷酸二氢钾、铌酸钡锶(SrxBa1-xNb2O6),磷酸二氢钾,钽铌酸钾[K(TaxNb1-x)O3]、铌酸钡钠(Ba·NaNb5O15)等铁电晶体和透明铁电陶瓷如锆钛酸镧铅[(Pb,La)(Zr,Ti)O3]等。由于极化状态或相变或折射率随电场而变,这类材料应用广泛如光学振荡器、频率倍增器、激光频振腔中的电压控制开关,光学通讯系的调制器,以及光的存贮和图像显示等。

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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