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Coupled polaritonic band gaps in the anisotropic piezoelectric superlattices
Authors:Zheng-Hua Tang  Zheng-Sheng Jiang  Tao Chen  Chun-Zhi Jiang  Da-Jun Lei  Jian-Quan Huang  Feng Qiu  Min Yao  Xiao-Yi Huang
Affiliation:1. Xiangnan University-Gospell Joint Laboratory of Microwave Communication Technology, Xiangnan University, Chenzhou 423000, China;2. National Laboratory of Solid State Microstructures and Department of Physics, Nanjing University, Nanjing 210093, China;3. Laboratory of Quantum Information and Quantum Materials, School of Physics and Telecommunication Engineering, South China Normal University, Guangzhou 510006, China
Abstract:
Anisotropic piezoelectric superlattices (APSs) with the periodic arrangement of polarized anisotropic piezoelectric domains in a certain direction are presented, in which the coupled polaritonic band gaps (CPBGs) can be obtained in the whole Brillouin Zone and the maximum relative bandwidth (band-gap sizes divided by their midgap frequencies) of 5.1% can be achieved. The general characteristics of the APSs are similar to those of the phononic crystals composed of two types of materials, with the main difference being the formation mechanism of the CPBGs, which originate from the couplings between lattice vibrations along two different directions and electromagnetic waves rather than from the periodical modulation of density and elastic constants. In addition, there are no lattice mismatches because the APSs are made of the same material. Thus, the APSs can also be extended to the construction of novel acousto-optic devices.
Keywords:Anisotropic piezoelectric superlattices  Phononic band gaps  Coupled polaritonic band gaps
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