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1.
THE EXPERIMENT OF OBSERVING ELECTRICALLY ELECTRICALLY CONTROLLED BIREFRINGENCE (ECB)OF LIQUID CRYSTAL WITH POLARIZING MICROSCOPE
液晶电控双折射偏光显微镜观测实验
2.
Study of Dual-frequency Nd:YAG Laser Technology Using Electrically Controlled Birefringence of Liquid-crystal;
液晶电控双折射双频Nd:YAG激光技术的研究
3.
Tunablility of Negative-Refraction in Metal-Rod Pair Metamaterial by Liquid Crystals
金属双柱metamaterial负折射特性的液晶调控
4.
Tunable Negative Index Metamaterials Using Nematic Liquid Crystals
负折射超材料响应中心频率的液晶调控
5.
Molecular Design and Simulation of Nematic Liquid Crystal of Fast Response and High Birefringence
快速高双折射率向列相液晶的分子设计与模拟计算
6.
Crystals having this property are said to be doubly refracting, or birefringent.
具有这种性质的晶体叫做双折射晶体。
7.
Design of a New 90° 2×4 Hybrid Based on the Birefringence and the Electro-Optic Effect of Crystal
基于晶体双折射和电光效应设计的90°2×4空间光桥接器
8.
In brief, the birefringence is varied eletronically by means of a controlled applied electric field.
简言之,用一个受控的外加电场以电子学方法来改变双折射。
9.
Coupling characteristics of dual-core high birefringence photonic crystal fibers
双芯高双折射光子晶体光纤耦合特性研究
10.
Study on properties of total internal reflection photonic crystal fibers with high birefringence
高双折射全内反射光子晶体光纤的特性研究
11.
Study on the Bragg Reflection Properties of Electrically Controlled Helix Distortion in Cholesteric Liquid Crystals;
胆甾相液晶电控螺距变化引起布拉格反射特性研究
12.
Measurement specification for birefractance crystal and polarizer
GB/T14077-1993双折射晶体和偏振器件测试规范
13.
Such substances are optically anisotropic and birefringent.
这种材料是光学各向异性的,因而是双折射晶体。
14.
The Numerical Simulation Research in the Growth Procession of Double Refraction Optical Crystal YVO_4;
双折射光学晶体YVO_4生长过程中的数值模拟研究
15.
Study on the Birefringence of Photonic Crystal Fiber and Its Application;
光子晶体光纤双折射特性的研究及应用
16.
Birefringence and Polarization Dependent Coupling in Photonic Crystal Fibers;
光子晶体光纤中的双折射和偏振依赖耦合
17.
Research on Optical Filter Based on Birefringent Effect in Photonic Crystal Fiber;
基于光子晶体光纤双折射效应的光滤波器研究
18.
The Growth of Double Refraction Crystal YVO_4 by Czochralski Methodand and Study the Growth Defects
提拉法生长双折射晶体钒酸钇(YVO_4)及其缺陷研究