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Bessel-Modal Method for Finite-Height Two-Dimensional Photonic Crystal |
SHI Jun-Feng;HUANG Sheng-Ye;WANG Dong-Sheng |
State Key Laboratory of Precision Measurement Technology and Instrument, Tsinghua University, Beijing 100084 |
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Cite this article: |
SHI Jun-Feng, HUANG Sheng-Ye, WANG Dong-Sheng 2005 Chin. Phys. Lett. 22 1937-1940 |
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Abstract By applying the dyadic Green function, the dispersion relation of two-dimensional photonic crystal can be expressed as the cylindrical wave expansions of eigenmodes. With the aid of Green’s theorem, the plane-wave coefficients of eigenmodes are reconstructed and employed to formulate the scattering matrix of finite-height two-dimensional photonic crystal. These operations make the convergence rate very rapid, and reduce the dimension of the scattering matrix. As a demonstration, we present the transmission and electromagnetic field distributions for an InGaAsIn photonic crystal, and investigate their convergence.
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Keywords:
42.70.Qs
42.25.-p
78.20.-e
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Published: 01 August 2005
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PACS: |
42.70.Qs
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(Photonic bandgap materials)
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42.25.-p
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(Wave optics)
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78.20.-e
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(Optical properties of bulk materials and thin films)
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