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利用平面波的方法计算三角格子的光子晶体的能带结构-using the plane-wave method of calculation of the triangular lattice photonic crystal structure of the band
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MIT的 MPB软件仿真三角晶格光子晶体波导帶隙的程序-MIT MPB software emulation triangular lattice photonic crystal waveguide band-gap program
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MIT的 MPB软件仿真二维三角晶格孔状结构光子晶体光学帶隙的程序-MIT MPB software emulation 2D triangular lattice photonic crystal band-gap program
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MIT的 MPB软件仿真三角晶格三椭圆结构光子晶体帶隙的程序-MIT MPB software emulation triangular lattice triple ellipses photonic crystal waveguide band-gap program
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MIT MPB program of triangular lattice of rods
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这个程序可以用于三角晶格空气孔光子晶体的能带计算。给出了解析的折射率分布
u1=[1,0,0]
u2=[1/2,sqrt(3)/2,0]
u3=[0,0,1]
-This code can be used in band structure of triangular lattice rod photonic crystal. It give out the dielectric distribution of circular air holes.
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利用matlab,计算三角晶格光子晶体能带图-Using matlab,we calculated triangular lattice photonic crystal energy band diagram
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linux系统下利用meep计算场分布、透射谱等,其中结构分为三角晶格和正方晶格。-Linux system of meep computing field distribution and transmission spectrum, etc., the structure is divided into triangular lattice and square lattice.
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二维结构光子晶体带结构计算程序,计算二维正方晶格和三角晶格的光子晶体能带结构-Two-dimensional photonic crystal band structure calculation program to calculate two-dimensional square lattice and triangular lattice photonic crystal band structure
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Here, for convenience, the vector in 2D is represented by a complex number: the real
part represents the x-component and the imaginary part represents the y-component. How to get the
Fourier transform is the key of this program. Here I used the a
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用平面波展开法计算的二维光子晶体空气孔结构,TM和TE模式的能带图,matlab程序源代码-With the plane wave expansion method to calculate the two-dimensional photonic crystal structure of air holes, TM and TE modes of the energy band diagram, matlab source code
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主要介绍了圆柱形声子晶体在正方格,三角格下的XY,Z模式。共有四个不同的m文件。可供大家参考。-Introduces the cylindrical phononic crystals in the positive square, triangular lattice of XY, Z mode. There are four different m-file. For your reference.
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this program calculates and plots the photonic bands for a 2D photonic crystal consisting of cylinders with circular cross-section and infinite height, arranged in a triangular lattice
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Graphene Disks in Triangular Lattice
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