Although tremendous efforts have been devoted to investigating planar single-conductor circuits,it remains challenging to provide tight confinement of electromagnetic field and compatibility with active semi-conductor...Although tremendous efforts have been devoted to investigating planar single-conductor circuits,it remains challenging to provide tight confinement of electromagnetic field and compatibility with active semi-conductor components such as amplifier,harmonic generator and mixers.Single-conductor spoof surface plasmon polariton(SSPP)structure,which is one of the most promising planar single-conductor transmission media due to the outstanding field confinement,still suf-fers from the difficulty in integrating with the active semi-conductor components.In this paper,a new kind of odd-mode-metachannel(OMM)that can support odd-mode SSPPs is proposed to perform as the fundamental transmission chan-nel of the single-conductor systems.By introducing zigzag decoration,the OMM can strengthen the field confinement and broaden the bandwidth of odd-mode SSPPs simultaneously.More importantly,the active semi-conductor amplifier chip integration is achieved by utilizing the intrinsic potential difference on OMM,which breaks the major obstacle in im-plementing the single-conductor systems.As an instance,an amplifier is successfully integrated on the single-conductor OMM,which can realize both loss compensation and signal amplification.Meanwhile,the merits of OMM including crosstalk suppression,low radar cross section(RCS),and flexibility are comprehensively demonstrated.Hence,the pro-posed OMM and its capability to integrate with the active semi-conductor components may provide a new avenue to fu-ture single-conductor conformal systems and smart skins.展开更多
从经典的多模谐振器出发,针对其插入损耗过大和阻带抑制较低的问题,提出了基于多模谐振器的超宽带带通滤波器新结构。通过奇偶模分析方法对其谐振特性和耦合特性进行了系统分析,利用ADS粗略仿真验证新结构的可行性,最后通过HFSS进行参...从经典的多模谐振器出发,针对其插入损耗过大和阻带抑制较低的问题,提出了基于多模谐振器的超宽带带通滤波器新结构。通过奇偶模分析方法对其谐振特性和耦合特性进行了系统分析,利用ADS粗略仿真验证新结构的可行性,最后通过HFSS进行参数优化,设计了一个中心频率6.5 GHz、相对带宽约为120%的超宽带带通滤波器,该滤波器整体性能良好,带外衰减十分陡峭,在11.5 GHz处达到45.5 d B,阻带宽度很宽,且具有插入损耗小、结构紧凑和尺寸小等优点。展开更多
基金financial supports from the National Natural Science Foundation of China under Grant Nos.62101122,61871127,61701108 and 61631007Natural Science Foundation of Jiangsu Province under Grant BK20210212the 111 Project under Grant No.111-2-05.
文摘Although tremendous efforts have been devoted to investigating planar single-conductor circuits,it remains challenging to provide tight confinement of electromagnetic field and compatibility with active semi-conductor components such as amplifier,harmonic generator and mixers.Single-conductor spoof surface plasmon polariton(SSPP)structure,which is one of the most promising planar single-conductor transmission media due to the outstanding field confinement,still suf-fers from the difficulty in integrating with the active semi-conductor components.In this paper,a new kind of odd-mode-metachannel(OMM)that can support odd-mode SSPPs is proposed to perform as the fundamental transmission chan-nel of the single-conductor systems.By introducing zigzag decoration,the OMM can strengthen the field confinement and broaden the bandwidth of odd-mode SSPPs simultaneously.More importantly,the active semi-conductor amplifier chip integration is achieved by utilizing the intrinsic potential difference on OMM,which breaks the major obstacle in im-plementing the single-conductor systems.As an instance,an amplifier is successfully integrated on the single-conductor OMM,which can realize both loss compensation and signal amplification.Meanwhile,the merits of OMM including crosstalk suppression,low radar cross section(RCS),and flexibility are comprehensively demonstrated.Hence,the pro-posed OMM and its capability to integrate with the active semi-conductor components may provide a new avenue to fu-ture single-conductor conformal systems and smart skins.
文摘从经典的多模谐振器出发,针对其插入损耗过大和阻带抑制较低的问题,提出了基于多模谐振器的超宽带带通滤波器新结构。通过奇偶模分析方法对其谐振特性和耦合特性进行了系统分析,利用ADS粗略仿真验证新结构的可行性,最后通过HFSS进行参数优化,设计了一个中心频率6.5 GHz、相对带宽约为120%的超宽带带通滤波器,该滤波器整体性能良好,带外衰减十分陡峭,在11.5 GHz处达到45.5 d B,阻带宽度很宽,且具有插入损耗小、结构紧凑和尺寸小等优点。