We report the design of a novel multiband metamaterial bandpass filter (BPF) in the terahertz (THz)-wave region. The designed BPF is composed of a metal-dielectric-metal sandwiched structure with three nested ring...We report the design of a novel multiband metamaterial bandpass filter (BPF) in the terahertz (THz)-wave region. The designed BPF is composed of a metal-dielectric-metal sandwiched structure with three nested rings on the top surface and a cross structure on the bottom surface. Full-wave simulation results show that the designed BPF has three transmission peaks at frequencies of 0.42, 1.27, and 1.86 THz with transmission rates of-0.87,-1.85, and-1.83 dB, respectively. Multi-reflection interference theory is introduced to explain the transmission mechanism of the designed triple-band BPF. The theoretical transmission spectrum is in good agreement with the full-wave simulated results. The designed BPF can maintain a stable performance as the incident angle varies from 0 to 30 for both transverse electric and transverse magnetic polarizations of the incident wave. The designed BPF can be potentially used in THz devices due to its multiband transmissions, polarization insensitivity, and stable wide-angle response in the THz region.展开更多
利用谱域法对频率选择表面(frequency selective surface,FSS)结构进行理论分析,设计了中心频率为0.338 THz工作在大气通信窗口的复合型FSS带通滤波器。该滤波器是对圆环槽单元滤波器进行改进,增加了三极子单元,通过研究结构参数对滤波...利用谱域法对频率选择表面(frequency selective surface,FSS)结构进行理论分析,设计了中心频率为0.338 THz工作在大气通信窗口的复合型FSS带通滤波器。该滤波器是对圆环槽单元滤波器进行改进,增加了三极子单元,通过研究结构参数对滤波性能的影响关系,进行结构优化。实验表明,该滤波器综合滤波性能更好,3 d B带宽可以达到69.5 GHz,回波损耗小于-13.46 d B,带内插入损耗小于0.45 d B,带内纹波低到0.1 d B,且通带平坦,有较好的带外抑制和矩形系数,边带比较陡峭。同时该滤波器在不同极化波和相同极化波不同入射角度入射时都有很好的频率稳定性,能有效地用于太赫兹通信。展开更多
参考传统的频率选择表面Y型中心连接型单元,提出一种多层结构的Y型环六边形阵列频率选择表面带通滤波器。设计了工作在太赫兹大气通信窗口的滤波器,研究了金属层数对3 d B带宽的影响,三层级联滤波器中心频率为338 GHz,3 d B带宽为75.82 ...参考传统的频率选择表面Y型中心连接型单元,提出一种多层结构的Y型环六边形阵列频率选择表面带通滤波器。设计了工作在太赫兹大气通信窗口的滤波器,研究了金属层数对3 d B带宽的影响,三层级联滤波器中心频率为338 GHz,3 d B带宽为75.82 GHz,带内最大插入损耗为0.48 d B。同时讨论了三层滤波器的极化方式和入射角,且该三层带通滤波器对入射波的极化方式不敏感,且在30°范围内的频率响应稳定,可适用于太赫兹大气通信、成像等领域中。展开更多
基金Project supported by the National Natural Science Foundation of China(Grant Nos.11504418,11447033,and 61372048)the Fundamental Research Funds for the Central Universities,China(Grant No.2015XKMS075)
文摘We report the design of a novel multiband metamaterial bandpass filter (BPF) in the terahertz (THz)-wave region. The designed BPF is composed of a metal-dielectric-metal sandwiched structure with three nested rings on the top surface and a cross structure on the bottom surface. Full-wave simulation results show that the designed BPF has three transmission peaks at frequencies of 0.42, 1.27, and 1.86 THz with transmission rates of-0.87,-1.85, and-1.83 dB, respectively. Multi-reflection interference theory is introduced to explain the transmission mechanism of the designed triple-band BPF. The theoretical transmission spectrum is in good agreement with the full-wave simulated results. The designed BPF can maintain a stable performance as the incident angle varies from 0 to 30 for both transverse electric and transverse magnetic polarizations of the incident wave. The designed BPF can be potentially used in THz devices due to its multiband transmissions, polarization insensitivity, and stable wide-angle response in the THz region.
文摘利用谱域法对频率选择表面(frequency selective surface,FSS)结构进行理论分析,设计了中心频率为0.338 THz工作在大气通信窗口的复合型FSS带通滤波器。该滤波器是对圆环槽单元滤波器进行改进,增加了三极子单元,通过研究结构参数对滤波性能的影响关系,进行结构优化。实验表明,该滤波器综合滤波性能更好,3 d B带宽可以达到69.5 GHz,回波损耗小于-13.46 d B,带内插入损耗小于0.45 d B,带内纹波低到0.1 d B,且通带平坦,有较好的带外抑制和矩形系数,边带比较陡峭。同时该滤波器在不同极化波和相同极化波不同入射角度入射时都有很好的频率稳定性,能有效地用于太赫兹通信。
文摘参考传统的频率选择表面Y型中心连接型单元,提出一种多层结构的Y型环六边形阵列频率选择表面带通滤波器。设计了工作在太赫兹大气通信窗口的滤波器,研究了金属层数对3 d B带宽的影响,三层级联滤波器中心频率为338 GHz,3 d B带宽为75.82 GHz,带内最大插入损耗为0.48 d B。同时讨论了三层滤波器的极化方式和入射角,且该三层带通滤波器对入射波的极化方式不敏感,且在30°范围内的频率响应稳定,可适用于太赫兹大气通信、成像等领域中。