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机构地区:[1]西北工业大学电流变技术研究所,西安710072
出 处:《物理学报》2007年第10期5883-5889,共7页Acta Physica Sinica
基 金:国家重点基础研究发展计划(批准号:2004CB719805);国家自然科学基金(批准号:50632030);国防基础研究资助的课题~~
摘 要:基于用一种结构同时实现材料介电常数和磁导率为负的思想,提出了H型结构单元左手材料模型.采用矩形波导法测试表明,H型结构单元在微波频率范围出现左手透射峰,并且可以由参数t对左手特性区域进行调控.同时利用相位法、棱镜折射法和散射参量法从实验和理论证明了在左手透射峰区域材料的折射率为负值,介电常数和磁导率亦同时为负.相对由金属开口谐振环与金属线两种结构组合实现的左手材料,H型结构集磁谐振与电谐振于一体,结构简单、制备方便,对微波器件左手材料表现出更多的优越性.We introduce a structure made of periodic arrays of H-shaped metallic pattern that offers a potentially simple approach in building left-handed metamaterials with simultaneous negative permittivity and permeability. We have investigated experimentally the transmittance in the rectangle waveguide and found unambiguously a passband that can be tuned easily at microwave frequencies by changing the parameter t. Using phase shift experiment, prism refraction experiment and S-parameter retrieval method, we have confirmed that the H-shaped metamaterials have negative refractive indices, negative permittivity and negative permeability at the passband frequencies. Compared with the conventional left-handed metamaterials consisting of arrays of wires and split ring resonators, H-shaped left-handed metamaterials show not only magnetic resonance but also electric resonance, so they will be a good candidate in the microwave applications due to their simple structure and easy preparation.
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