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1)  heterostructures of two-dimensional photonic crystal
二维光子晶体异质结
2)  heterostructure photonic crystals
异质结光子晶体
3)  heterostructure photonic crystals waveguides
异质结光子晶体波导
1.
Study and fabrication of multimode interference-based heterostructure photonic crystals waveguides optical power spliter;
多模干涉异质结光子晶体波导光功分器的研制
4)  2D photonic crystal
二维光子晶体
1.
The transmitted character of 2D photonic crystal was calculated by transfer matrix method(TMM), and the transmission behavior of the different polarized light was discussed.
用转移矩阵方法计算了二维光子晶体的传输性质 ,讨论了不同极化光的透射行为 ,比较了正方点阵、有心正方点阵、含缺陷有心正方点阵光子能带对透射特性的影响 ,获得了第一禁带特性与光子晶体结构的一些基本关系 。
2.
We introduced two new types of 2D photonic crystal structures for.
5%,该结果远大于已提出的各向异性二维光子晶体的完全禁带。
3.
Thus the templates that can be used to produce 2D photonic crystals in any wavelength of photic wave band were prepared, and these templates can match the needs of photonic crystals tem.
选择模板填充材料和电沉积条件,制备不同介电常数差的两相介质有序排列(二维光子晶体),并对其进行表征。
5)  two-dimensional photonic crystal
二维光子晶体
1.
All sort of excitation source numerical simulation of two-dimensional photonic crystal by Finite-Defferce-Time-Domain(FDTD) are analyzed The Influence of pure plane wave source and Gaussian beam source in numerical simulation of two-dimensional photonic crystal is studied.
用时域有限差分法(FDTD)分析了二维光子晶体的传输特性,研究了纯平面波源、高斯波源对传输特性的影响,指出在同一种激励源情况,二维光子晶体的传输特性与其入射角有关。
2.
A finite difference time domain method is used to simulate the effective dielectric constant of two-dimensional photonic crystal which is formed with carbon nanotubes.
把有序排列的碳纳米管看做二维光子晶体,引入平均场方法,先计算单根纳米碳管的有效介电常数,再用时域有限差分方法(FDTD)计算碳管阵列的有效介电常数,其结果与Maxwell-Garnett(MG)法结果相比,更接近实验数据。
3.
Energy band characteristic of two-dimensional photonic crystal is analyzed through finite difference time domain and Bloch boundary method.
采用时域有限差分加B loch边界方法得到了二维光子晶体的能带特性,结合超元胞的方法计算了含有点缺陷和线缺陷的光子晶体的特性,并且得到了缺陷模式的场分布,通过对能带特性的分析,将对光子晶体的研究从量子阱结构发展到了量子点结构。
6)  two-dimensional photonic crystals
二维光子晶体
1.
Simulation of the photonic band gap-midgap ratio of two-dimensional photonic crystals consisting of noncircular air holes;
非圆形空气孔型二维光子晶体带隙率模拟
2.
s:The plane wave expansion method (PWM) and rapid genetic algorithm (RGA) are used to design two-dimensional photonic crystals with large complete band-gaps.
采用平面波展开法和快速遗传算法优化设计具有大禁带的二维光子晶体。
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