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1)  Left-handed materials
左手介质
1.
The Goos-Hnchen shift on the surface of uniaxially anisotropic left-handed materials;
单轴各向异性左手介质表面的Goos-Hnchen位移
2.
There has been a renewed interest in research of Left-handed materials(LHM) in the past few years.
左手介质是近年来新兴的研究项目。
3.
The effects caused by disorder,rotating and cutting in left-handed materials (LHM) are investigated.
研究了基本结构移动、旋转、切割对左手介质传输特性的影响。
2)  left-handed material
左手介质
1.
Research on Left-Handed Material Surface Wave Characteristics;
左手介质表面波特性研究
2.
The velocity of electromagnetic wave in left-handed material;
左手介质中电磁波的传播速度
3.
Because it is the material with simultaneously negative permittivityεand permeabilityμ, compared with the regular material, left-handed material has some unusual properties as follows: negative refractive index, inverse Doppler effect, inverse Cerenkov radiation, anti-paralled phase and group velocities, and so on.
左手介质是一种新型的人造材料,与常规介质相比,它同时具有负的介电常数ε和磁导率μ,表现出与常规介质不同的特性,比如负折射率、反向多普勒效应、负切仑科夫辐射、以及相速度与群速度的方向相反等等。
3)  left-handed medium
左手介质
1.
Investigation on the miniaturization of the microstrip antenna based on the backward wave property of left-handed medium;
基于左手介质后向波特性的微带天线小型化研究
2.
The three ways to realize negative re- fraction that are from double negative medium to negative refraction,from left-handed medium to negative refraction, and from photonic crystals to negative refraction are expeounded deeply.
介绍了负折射产生的原理及其奇特性质,着重阐述了实现负折射材料的3种主要方法:双负介质实现负折射、左手介质实现负折射和光子晶体实现负折射。
4)  left-handed metamaterials
左手介质
1.
To verify the presence of the left-handed frequency band,3D numerical simulation is conducted to an array of left-handed metamaterials including eight units,which demonstrates that the left-handed metamaterial microstrip line can sup.
基于裂缝谐振环结构的降频技术,首先设计了一种电尺寸较小的左手介质微带线单元,并根据电磁波在微带线上的传输和反射数据,分别计算了左手介质的有效介电常数和有效磁导率。
5)  left-handed materials
左手性介质
1.
Advances in research on left-handed materials;
采用电磁理论分析了左手性介质的基本性质 ;阐述了用左手性介质制作的平板透镜进行实现超衍射分辨率成像的机理 ;介绍了在人工构造左手性材料方面所取得的实验进
6)  left-right hand medium
左-右手介质
补充资料:左手定则
左手定则
left-hand rule

   确定载流导线在外磁场中受力方向的定则。又称电动机定则。左手平展,大拇指与其余4指垂直,若磁力线垂直进入手心,4指指向电流方向,则大拇指所指方向为载流导线在外磁场中受力的方向。
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