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1)  structural bands
结构带
2)  energy band structure
能带结构
1.
Crystal and energy band structure of (PyH)[M(dmit)_2]_2 (M=Pd, Ni);
分子导体(PyH)[M(dmit)_2]_2(M=Pd,Ni)的晶体结构与能带结构
2.
Study on the energy band structures of transition metal phthalocyanines;
过渡金属酞菁化合物的能带结构研究
3.
The Hypothesis of “protein of channels and collaterals energy band structure”;
“经络蛋白能带结构”假说
3)  band structure
能带结构
1.
GW quasiparticle band structure of BaSe;
BaSe的准粒子能带结构
2.
First principle study for effect of exchange correlation potential on lattice parameter and band structure of PbS;
交换关联势对PbS晶格常数和能带结构影响的第一性原理研究
3.
First-principal calculations of band structure and optical functions of 3C-SiC;
3C-SiC的能带结构和光学函数的第一性原理计算
4)  Band gap structure
带隙结构
1.
Study of two dimensional photonic band gap structure;
二维光子晶体带隙结构的研究
2.
Change of band gap structure of 1-D photonic crystal of periodic positive-negative index structure at angular incidence;
含正负介质光子晶体在角度入射情况下的带隙结构变化
3.
With the boundary conditions satisfied by the electromagnetic fields in the interface between the crystal and the clad,the characteristic equation to describe the band gap structure is deduced.
根据电磁场在包层边界应满足的基本关系,建立了描述其带隙结构的特征方程,给出了特征方程迭代求解的算法描述,为电磁波传播特性数值仿真分析提供了理论基础。
5)  zone-dividing structure
分带结构
1.
To the zone-dividing structure of four-zone spherical tank,the material utilization rate of upper temperate zone and equator zone is relatively low,welding joint is rather long,number of petal is rather large,the distance between cap and welding joint of temperate zone to equator zone is small.
四带球罐的分带结构有温带和赤道带的材料利用率较低、焊缝较长、球壳板数量多以及温带与赤道带焊缝距支柱盖近等缺点。
6)  band-gap structure
带隙结构
1.
Computations of one-dimensional photonic crystal band-gap structures using Rouard's method;
基于Rouard方法的一维光子晶体带隙结构计算
2.
The authors proposed a new model of one-dimensional photonic crystal composed of alternately arranged RHM and LHM layers, calculated numerically the transmission spectra of the model with the transfer matrix method, and theoretically analyzed characteristics of the band-gap structure.
提出了用正、负折射率介质层交替排列构成的一维光子晶体模型,并且用传输矩阵法计算了该模型的透射谱,从理论上分析了其带隙结构。
3.
Comparing with the periodical structure, its band-gap structure has some characteristics.
其带隙结构与不包含缺陷结构的带隙结构相比有明显的不同,系统的透射率不仅与掺杂或替换的介质种类和层数有关,而且与介质的厚度有关。
补充资料:间接带隙(见半导体的能带结构)


间接带隙(见半导体的能带结构)
indirect band gap

  I’ed接带隙indireet band gap见半导体的能带结构。
  
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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