• Laser & Optoelectronics Progress
  • Vol. 58, Issue 21, 2108002 (2021)
Xuandi Zhu and Jianhua Yuan*
Author Affiliations
  • School of Science, Beijing University of Posts and Telecommunications, Beijing 100876, China
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    DOI: 10.3788/LOP202158.2108002 Cite this Article Set citation alerts
    Xuandi Zhu, Jianhua Yuan. Numerical Simulation for Negative Refractive Index of Two-dimensional Photonic Crystals[J]. Laser & Optoelectronics Progress, 2021, 58(21): 2108002 Copy Citation Text show less

    Abstract

    In order to study the frequency range of the negative refractive index of the photonic crystal, the band gap structure of the two-dimensional photonic crystal is solved by analyzing the numerical value based on the finite element algorithm. This process involves how to design the mathematical and physical models, design the solving equation of the finite element algorithm, and the numerical results were physically analyzed. First, the finite element algorithm is used to calculate the points in the wave vector space of all relevant frequencies in the Brillouin region to plot the isofrequency surface. Then, the isofrequency surface under different air hole radii is drawn. Finally, the frequency interval between the negative refractive index can be obtained by finding the direction with negative group velocity on the structure of the isofrequency surface. At the same time, comparing the influence of different air hole radii on the frequency range of the negative refraction of photonic crystals can provide support for the preparation of photonic crystal devices.
    ×Ex=-iωBx
    ×Hx=Jx+iωDx
    Dx=ρ
    Bx=0
    ×1μ×Ex-ω2εEx=0
    ×1ε×Hx-ω 2μHx=0
    ××Ex-k02εrxEx=0
    ×1εr×Hx-k02Hx=0
    u'+k02u'=0
    1εru'+k02u'=0
    +ik+ikuR+k02εruR=0
    +ik1εr+ikuR+k02uR=0
    uR|Γu=uR|Γd
    uR|Γl=uR|Γr
    +ikϱ+iku+ω2κu=0,in Ω,s.t. uΓl=uΓr,uΓu=uΓd
    ϱ=1,TM1εr,TE
    κ=κ˜0εr,TMκ˜02,TE
    κ˜=ε0μ0
    v1=vL2Ω+vL2Ω,v𝕏
    ϱ+iku,+ikv-ω2κu,v=0,  in Ω
    au,v=ϱ+iku,+ikv
    bu,v=ω2κu,v
    au,v=ω2bu,v,in Ω,   s.t. uΓl=uΓr,uΓu=uΓd
    uhx,y=q=1Puh,qΦqxq,yq
    auh,vh=ω2buh,vh,   vh𝕏h
    u1,K=aK+bKx1,K+cKy1,Ku2,K=aK+bKx2,K+cKy2,Ku3,K=aK+bKx3,K+cKy3,K
    uKx,y=j=13Nj,Kx,yuj,K
    Nj,Kx,y=12ΔKaj,K+bj,Kx+cj,Ky
    a1,K=x2,Ky3,K-y2,Kx3,K;b1,K=y2,K-y3,K;c1,K=x3,K-x2,Ka2,K=x3,Ky1,K-y3,Kx1,K;b2,K=y3,K-y1,K;c2,K=x1,K-x3,Ka3,K=x1,Ky2,K-y1,Kx2,K;b3,K=y1,K-y2,K;c3,K=x2,K-x1,K
    ΔK=121x1,Ky1,K1x2,Ky2,K1x3,Ky3,K=12b1,Kc2,K-b2,Kc1,K
    Aij,K=ϱ+ikNj,Kx,y,+ikNi,Kx,y=ϱbj,Kbi,K+cj,Kci,K4ΔK2K1 dxdy+iϱαbi,K+βci,K×KNj,kx,ydxdy-iϱαbj,K+βcj,KKNi,kx,ydxdy+ϱα2+β2KNj,kx,yNi,Kx,ydxdy
    Bij,K=κNj,Kx,y,Ni,Kx,y=KNj,kx,yNi,Kx,ydxdy=κKNj,kx,yNi,Kx,ydxdy
    AUh=λBUh
    ux,y|Γr=ux,y|Γl
    ux,y|Γu=ux,y|Γd
    Xuandi Zhu, Jianhua Yuan. Numerical Simulation for Negative Refractive Index of Two-dimensional Photonic Crystals[J]. Laser & Optoelectronics Progress, 2021, 58(21): 2108002
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