1)  negative refraction
负折射效应
2)  Negative refractive index
负折射率
1.
A study on electromagnetic characteristic parameters of mediums with negative refractive index;
负折射率介质的电磁特性参数研究
2.
An unusual angular gap of 1-D photonic crystal containing negative refractive index materials;
含负折射率介质光子晶体的斜角禁带
3)  negative refraction
负折射率
1.
In this article ,the band gap of a ID photonic crystal containing negative refraction materials was studied.
研究了含负折射率材料的一维光子晶体中一种特殊的带隙,这种带隙最适合的用途是做新型光子晶体滤波器。
4)  negative refraction
负折射
1.
Antireflection coating for two-dimensional air hole-type photonic crystal negative refraction slab lens;
二维空气孔型光子晶体负折射平板透镜的减反层
2.
Design of a 2D photonic crystal with negative refraction;
具有负折射的二维光子晶体设计
3.
Analysis of the negative refraction in two-dimensional photonic crystals with wavy structure;
波状结构二维光子晶体负折射现象的研究
5)  negative refraction index
负折射率
1.
This paper focuses on a series of theoretical and experimental studies of the physical optics,such as the Goos-Hnchen shift,the FTIR phenomena,the negative refraction index,the superluminal experiments of THz rays,and the measurement of photon rest mass.
就物理光学方面的一系列理论和实验研究,如Goos-Hanchen位移、FTIR现象、负折射率、太赫超光速实验、光子静质量测量等做了评述和讨论。
2.
The new electromagnetic properties of negative index material such as converse Cerenkov radiation and converse Doppler effect,negative refraction index and perfect lens are analyzed and explained by using basic electromagnetic theory.
从基本的电磁场理论出发,分析和解释负折射物质的电磁特性,以及负折射物质中的逆Cerenlov现象、逆Doppler现象、负折射率和完美透镜的工作原理,帮助人们更加清楚地认识负折射物质的本质特性,更好地开发和应用好负折射物质。
6)  negative index of refraction
负折射率
1.
The paper introducs the history and research of negative refractive materials and simply analysis of negative index of refraction gives rise to the strange properties such as negative group velocity,negative refraction,perfect lens,inverse doppler effect and abnormal Cerenkov radiation.
介绍了负折射率材料的发现及研究历史,简单分析由负折射产生的负群速度、逆多普勒频移、反常切伦柯夫辐射、完美透镜等各种效应,进一步讨论负折射材料的应用展望。
参考词条
补充资料:电控双折射效应
分子式:
CAS号:

性质:当一束光斜交于陶瓷极化轴方向传播时会产生双折射,且有效双折射率与陶瓷的剩余极化强度有关,也与外电场强度有关。因此,细晶透明铁电陶瓷的有效双折射率可以通过改变剩余极化强度和外电场强度进行控制,这就称为电控双折射效应。锆钛酸铅镧(PLZT)透明陶瓷具有较显著的电控双折射效应,可以和单晶材料一样用于制作光调制器、光开关、光偏转器、光存贮器、显示器等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。