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四类畴压电压磁超晶格的电磁波单方向透射
引用本文:唐政华,雷大军,黄健全,邱枫,蒋纯志,姚敏,杨丽萍.四类畴压电压磁超晶格的电磁波单方向透射[J].华南师范大学学报(自然科学版),2016,48(4):26-30.
作者姓名:唐政华  雷大军  黄健全  邱枫  蒋纯志  姚敏  杨丽萍
作者单位:1.(湘南学院电子信息与电气工程学院,郴州 423000)
基金项目:湖南省高校科技创新团队项目(湘教通[2014]207号);湖南省教育厅项目(14C1060);郴州市科技计划项目(CZ2014042)
摘    要:压电压磁超晶格中畴排列方式的不同导致其性质发生改变. 文中基于四类畴压电压磁超晶格结构,将1个周期内畴的排布方式分为(+P,-P,+M,-M)、(+P,-P,+P,+M)和(+P,+M,-M,+M)3种. 对于(+P,-P,+P,-M)结构,〖AK-D9〗=2719附近存在1个单方向频率通道,相对带宽约为326%. 对于(+P,-P,+P,+M)结构,〖AK-D9〗=2374附近通道2的最大群速度指数可达ng=69 6951. 电磁波通过长为1 cm的超晶格的延迟时间约为232 s. 对于(+P,+M,-M,+M)结构,通过外加电场反转极化可实现快波和慢波的切换,群速度指数的改变量可达525, 可用于构造单方向电磁波导和群速度延迟器件.

关 键 词:四类畴压电压磁超晶格    耦合极化激元带结构    单方向频率通道    群速度指数
收稿时间:2016-03-12

Unidirectional Transmission Investigations of Electromagnetic Waves in Piezoelectric-Piezomagnetic Superlattices with Four Types of Domains in a Unit Cell
TANG Zhenghua;LEI Dajun;HUANG Jianquan;QIU Feng;JIANG Chunzhi;YAO Min;YANG Liping.Unidirectional Transmission Investigations of Electromagnetic Waves in Piezoelectric-Piezomagnetic Superlattices with Four Types of Domains in a Unit Cell[J].Journal of South China Normal University(Natural Science Edition),2016,48(4):26-30.
Authors:TANG Zhenghua;LEI Dajun;HUANG Jianquan;QIU Feng;JIANG Chunzhi;YAO Min;YANG Liping
Institution:1.(School of Electronic Information and Electrical Engineering,Xiangnan University,Chenzhou 423000,China)
Abstract:The different arrangements of domains of piezoelectric-piezomagnetic superlattices lead to different pro-perties. Piezoelectric-piezomagnetic superlattices with four types of domains in a unit cell (FPPS) are studied in detail in this work; the arrangements of a period are divided into 3 types, that is (+P,-P,+M,-M), (+P,-P,+P,〖JP2〗+M) and (+P,+M,-M,+M). For the FPPS with 〖JP2〗(+P,-P,+M,-M) domains, there is a frequency channel allowing one-way transmission of forward electromagnetic waves, and the relative bandwidth is about 326%. For the FPPS with (+P,-P,+P,+M),〖JP〗 the maximum group velocity index ngreaches 69 6951 in the frequency channel around 〖DD(-1.7mm〗-〖DD)〗=2374. The delay time is about 232 s when electromagnetic waves pass through the FPPS with the total length of 1 cm. For the FPPS with (+P,+M,-M,+M), the fast and slow waves can be switched when the electric field is applied to invert the polarization, and the change of group velocity index can reach 525. Thus, it is suggested that the FPPS can be applied to construct the one-way waveguide and slow wave delay devices.
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