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1)  triangular lattice
三角晶格
1.
Two-dimensional photonic crystal with triangular lattice structure of air cubes and its characteristics of band gap;
正方空气柱结构二维三角晶格光子晶体及其禁带特征
2.
Design of triangular lattice photonic crystals using genetic algorithms;
遗传算法优化设计三角晶格光子晶体
3.
A two-dimensional photonic crystal formed by a triangular lattice of square dielectric rods with a large absolute band gap;
大带隙二维正方介质柱三角晶格光子晶体
2)  triangular antiferromagnets
三角晶格
1.
Spin dynamics in doped spatially anisotropic triangular antiferromagnets;
掺杂各向异性三角晶格系统的自旋动力学
2.
The integrated spin dynamics of the hole doped bilayer triangular antiferromagnets is studied within the t-J model based on the fermion-spin theory.
从t-J模型出发,在feimion-spin理论框架下研究了空穴型掺杂双层三角晶格反铁磁体积分自旋动力学。
3.
But there are a few differences between triangular lattice and square lattice caused by the geometrical frustration in triangular antiferromagnets.
从t-J模型出发,在feimion-spin理论框架下研究了空穴型掺杂三角晶格反铁磁体的c-轴电荷动力学。
3)  two-dimentional triangular lattice
二维三角晶格
1.
This paper discusses the two-dimentional triangular lattice Ising model by using the MCRG,critical temperature and exponents are given.
用蒙特卡罗重正化群方法计算了二维三角晶格Ising模型的不动点,以及热临界指数和磁临界指数。
4)  bilayer triangular antiferromagnets
双层三角晶格
1.
It is shown that the c-axis charge dynamics is dependent on the species of the building blocks between the CuO2 planes,that is,for the chain bilayer triangular antiferromagnets,the c-axis charge dynamics is mainly governed by the scattering from the in-plane fluctuation.
由t-J模型出发,在Feimion-spin理论框架下研究了有Cu-O链的双层三角晶格反铁磁体的c-轴电荷动力学。
5)  composite triangular lattice
复合三角形晶格
6)  plane triangular lattice
平面三角晶格
1.
The method that combines the effective - field renormalization group (EFRG) with the discretized path - integral representation (DPIR) is extenged to study phase transition of the transverse Ising model (TIM) in a quantum - spin system on the plane triangular lattice(PTL).
将离散路径积分表示(DPIR)下的有效场重整化群(EFRG)技巧推广应用于平面三角晶格上量子自旋横向Ising模型的相变研究,在这个方法中,注意区分了两种具有相同配位数而不同几何构形的晶体,并且考虑了起伏的影响,在二阶累积量近似下,得到了接近于精确解的临界值。
补充资料:A和B交替生长的超晶格结构


A和B交替生长的超晶格结构


  A和B交替生长的超晶格结构层厚:黑2帆A 白30A B中周科学院十导体研究所供稿
  
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