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Photonic band structure of three-dimensional colloidal crystals with field-induced lattice structure transformation

Photonic band structure of three-dimensional colloidal crystals with field-induced lattice structure transformation
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摘要 By utilizing the electrorheological effect, three-dimensional colloidal crystals can be produced, whose lattice structure can be changed from the body-centered-tetragonal lattice to other lattices under the application of electric fields. This paper calculates photonic band structures of such crystals with lattice structure transformation, and demonstrates the existence of complete band gaps for some intermediate lattices. Thus, it becomes possible to use the electrorheological effect to achieve photonic crystals with desired photonic gap properties resulting from tunable structures. By utilizing the electrorheological effect, three-dimensional colloidal crystals can be produced, whose lattice structure can be changed from the body-centered-tetragonal lattice to other lattices under the application of electric fields. This paper calculates photonic band structures of such crystals with lattice structure transformation, and demonstrates the existence of complete band gaps for some intermediate lattices. Thus, it becomes possible to use the electrorheological effect to achieve photonic crystals with desired photonic gap properties resulting from tunable structures.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第2期325-328,共4页 中国物理B(英文版)
基金 supported by the National Key Basic Research Special Fund (Grant No. 2006CB921706) the National Natural Science Foundation of China (Grant Nos. 10604014 and 10874025)
关键词 photonic crystals electrorheological effects band gaps photonic crystals electrorheological effects band gaps
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