Independent Modulation of Omnidirectional Defect Modes in Single-Negative Materials Photonic Crystal with Multiple Defects
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Abstract
Single-negative materials based on photonic crystal with multiple defect layers are designed and the free modulation of defect modes is studied. The results show that the multi-defect structure can avoid the interference between the defect states. Therefore, the designed double defect modes in the zero effective-phase gap can be adjusted independently by changing
the thickness of different defect layers. In addition, the two tunable defect modes have the omnidirectional characteristics. This multi-defect structure with above-mentioned two advantages has potential applications in modern optical devices such as tunable omnidirectional filters.
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WANG Qiong, YAN Chang-Chun, ZHANG Ling-Ling, CUI Yi-Ping. Independent Modulation of Omnidirectional Defect Modes in Single-Negative Materials Photonic Crystal with Multiple Defects[J]. Chin. Phys. Lett., 2008, 25(4): 1313-1316.
WANG Qiong, YAN Chang-Chun, ZHANG Ling-Ling, CUI Yi-Ping. Independent Modulation of Omnidirectional Defect Modes in Single-Negative Materials Photonic Crystal with Multiple Defects[J]. Chin. Phys. Lett., 2008, 25(4): 1313-1316.
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WANG Qiong, YAN Chang-Chun, ZHANG Ling-Ling, CUI Yi-Ping. Independent Modulation of Omnidirectional Defect Modes in Single-Negative Materials Photonic Crystal with Multiple Defects[J]. Chin. Phys. Lett., 2008, 25(4): 1313-1316.
WANG Qiong, YAN Chang-Chun, ZHANG Ling-Ling, CUI Yi-Ping. Independent Modulation of Omnidirectional Defect Modes in Single-Negative Materials Photonic Crystal with Multiple Defects[J]. Chin. Phys. Lett., 2008, 25(4): 1313-1316.
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