Localized Mode Enhanced Coupler Based on Quasi-One-Dimensional Photonic Crystal Microstrip
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Abstract
We propose a novel localized mode enhanced (LME) coupler based on quasi-one-dimensional photonic crystal microstrips, which is promising to be applied in wavelength division multiplexed microwave communication systems. Compared to the traditional microstrip coupler, the LME structure has two advantages: high efficiency and frequency selectivity. Even in a relatively far coupling distance, this structure can still achieve a high efficiency about 50%. The frequency selectivity can be realized by simply tuning the distance between two transmission lines.
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LI Yun-Hui, JIANG Hai-Tao, HE Li, LI Hong-Qiang, ZHANG Ye-Wen, CHEN Hong. Localized Mode Enhanced Coupler Based on Quasi-One-Dimensional Photonic Crystal Microstrip[J]. Chin. Phys. Lett., 2004, 21(10): 1976-1978.
LI Yun-Hui, JIANG Hai-Tao, HE Li, LI Hong-Qiang, ZHANG Ye-Wen, CHEN Hong. Localized Mode Enhanced Coupler Based on Quasi-One-Dimensional Photonic Crystal Microstrip[J]. Chin. Phys. Lett., 2004, 21(10): 1976-1978.
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LI Yun-Hui, JIANG Hai-Tao, HE Li, LI Hong-Qiang, ZHANG Ye-Wen, CHEN Hong. Localized Mode Enhanced Coupler Based on Quasi-One-Dimensional Photonic Crystal Microstrip[J]. Chin. Phys. Lett., 2004, 21(10): 1976-1978.
LI Yun-Hui, JIANG Hai-Tao, HE Li, LI Hong-Qiang, ZHANG Ye-Wen, CHEN Hong. Localized Mode Enhanced Coupler Based on Quasi-One-Dimensional Photonic Crystal Microstrip[J]. Chin. Phys. Lett., 2004, 21(10): 1976-1978.
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