Design of Two-Dimensional Photonic Crystal Edge Emitting Laser for Photonic Integrated Circuits
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Abstract
An edge emitting laser based on two-dimensional photonic crystal slabs is proposed. The device consists of a square lattice microcavity, which is composed of two structures with the same period but different radius of air-holes, and a waveguide. In the cavity, laser resonance in the inner structure benefits from not only the anomalous dispersion characteristic of the first band-edge at the M point in the first Brillouin-zone but also zero photon states in the outer structure. A line defect waveguide is introduced in the outer tructure for extracting photons from the inner cavity. Three-dimensional finite-difference time-domain simulations apparently show the in-plane laser output from the waveguide. The microcavity has an effective mode volume of about 3.2(λ/nslab)3 for oscillation mode and the quality factor of the device including line defect waveguide is estimated to be as high as 1300.
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Cite this article:
MA Xiao-Tao, ZHENG Wan-Hua, REN Gang, CHEN Liang-Hui. Design of Two-Dimensional Photonic Crystal Edge Emitting Laser for Photonic Integrated Circuits[J]. Chin. Phys. Lett., 2006, 23(10): 2759-2762.
MA Xiao-Tao, ZHENG Wan-Hua, REN Gang, CHEN Liang-Hui. Design of Two-Dimensional Photonic Crystal Edge Emitting Laser for Photonic Integrated Circuits[J]. Chin. Phys. Lett., 2006, 23(10): 2759-2762.
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MA Xiao-Tao, ZHENG Wan-Hua, REN Gang, CHEN Liang-Hui. Design of Two-Dimensional Photonic Crystal Edge Emitting Laser for Photonic Integrated Circuits[J]. Chin. Phys. Lett., 2006, 23(10): 2759-2762.
MA Xiao-Tao, ZHENG Wan-Hua, REN Gang, CHEN Liang-Hui. Design of Two-Dimensional Photonic Crystal Edge Emitting Laser for Photonic Integrated Circuits[J]. Chin. Phys. Lett., 2006, 23(10): 2759-2762.
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