Tuning the band gap of self-assembled superparamagnetic photonic crystals in colloidal magnetic fluids using external magnetic fields |
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Authors: | Shengli Pu Tao Geng Xianfeng Chen Xianglong Zeng Ming Liu Ziyun Di |
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Affiliation: | 1. College of Science, University of Shanghai for Science and Technology, Shanghai 200093, China;2. Department of Physics, The State Key Laboratory on Fiber Optic Local Area Communication Networks and Advanced Optical Communication Systems, Shanghai Jiao Tong University, Shanghai 200240, China;3. Key Laboratory of Special Fiber Optics and Optical Access Networks, Ministry of Education, SCIE, Shanghai University, Shanghai 200072, China |
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Abstract: | The model of tunable superparamagnetic photonic crystals self-assembled in colloidal magnetic fluids under externally applied magnetic fields is established. The mechanisms, which are in charge of the tunability of the band gaps with magnetic fields are clarified. The band structures of the triangularly-arrayed two-dimensional photonic crystals with limited heights of magnetic columns are calculated with the experimental data of structures and refractive indices in the literatures. The field-dependent properties of the first band gaps are gained for the z-odd and z-even modes, respectively. Simulation results indicate that the mid frequencies of the first band gaps of the z-odd modes can be easily tuned by the external magnetic fields, while those of the z-even modes bear relatively weak dependence on the external magnetic fields. Simultaneously, the first band gaps of both kinds of modes become wide along with the increase of the magnetic fields. The results presented in this work give a guideline for realizing the tunable photonic crystals with magnetically colloidal materials and magnetic stimuli. |
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Keywords: | 75.50.Mm 42.70.Qs 64.75.Yz 85.70.Sq |
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