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1)  all-optical switching effect
全光开关效应
1.
Finally,the all-optical switching effect of the polymer was experimentally inv.
利用核磁共振波谱(1HNMR)、红外光谱(FTIR)和紫外吸收光谱(UV-V is),对所合成的单体及聚合物进行了结构表征,并探讨了所制备聚合物的全光开关效应
2.
Furthermore, the all-optical switching effect of the polymer was investigated experimentally.
研究了所制备的聚合物的全光开关效应
2)  all-optical's witching effect
全光光开关效应
3)  switching effect
光开关效应
1.
PDLC based on PMMA thin film was fabricated using solvent-induced phase separation and a general study on the factors which will affect the switching effect was represented in the paper for the first time.
以溶致相分离的方法制备了PMMA基的PDLC,并首次对影响其光开关效应的因素做了较为系统的研究。
2.
Polymer-dispersed liquid crystals(PDLC) based on PMMA thin film was fabricated by using solvent-induced phase separation,and a general study on the factors which affect the switching effect wave represented in the paper.
以溶致相分离的方法制备了聚甲基丙烯酸甲酯(PMMA)基聚合物分散液晶(PDLC),并对影响其光开关效应的因素做了较为系统的研究。
4)  electric-light effect type optical switch
电光效应式光开关
5)  all-optical switching
全光开关
1.
Theoretical analysis of the all-optical switching characteristic via multisep χ2 cascading;
多级级联二阶非线性效应全光开关特性研究
2.
A all-optical switching based on highly nolinear photonic crystal fiber Sagnac loop mirror;
基于高非线性光子晶体光纤Sagnac环形镜的全光开关
3.
The required performances of non-linear optical materials for all-optical switching devices were described in details,and the advantages of chalcogenide glasses used for optical switching devices are illustrated.
详细分析了全光开关器件对非线性光学材料性能的要求,综述了硫系玻璃作为全光开关器件用材料性能方面的优势,并总结了近年来人们对硫系玻璃在全光开关应用方面的研究成果。
6)  all-optical switch
全光开关
1.
Studies of all-optical switching characteristics of ethyl orange azo-dye-doped polymer;
乙基橙偶氮聚合物全光开关特性的研究
2.
Preparation and all-optical switching characteristics of ethyl red doped organic film;
乙基红掺杂有机薄膜的制备及全光开关性能研究
3.
The all-optical switching characteristics of the samples with different doping concentrations were investigated at different powers and different modulating frequencies of the control beam.
研究了在不同功率和不同调制频率的控制光(532nm,CW)激发下,不同掺杂浓度薄膜样品的全光开关特性。
补充资料:材料光弹效应
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性质:又称压光效应(piezo-optical effect)或弹光效应(elasto-optical effect)。指介质由于受应力的作用而引起折射率改变的现象。在应力作用下,单折射物质变为双折射物质或使双折射物质的双折射性质得到进一步改善。它存在于一切透明介质中(无论是晶体还是非晶体,固体还是液体),也存在于压电晶体或透明陶瓷中。当弹性应变以弹性波的形式存在于介质中时,光将被介质中的弹性波所衍射或散射,发生声光效应,在本质上仍属弹光效应。石英玻璃、磷化镓、砷化镓、二氧化钛、铌酸锂、硫化钙α-Al2O3及透明铁电陶瓷等材料具有光弹效应,对激光技术,计算技术,全息存贮与显示,以及光电子学等新学科的发展具有一定推动作用。

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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