提出并研究了一种具有结构紧凑、散热性好、输出功率大等特点的新型扩展互作用结构——径向扩展互作用振荡器(EIO),并推导了小信号理论.利用电磁仿真软件分析了径向EIO高频结构中的谐振特性与场分布,并采用三维粒子模拟软件开展了注波...提出并研究了一种具有结构紧凑、散热性好、输出功率大等特点的新型扩展互作用结构——径向扩展互作用振荡器(EIO),并推导了小信号理论.利用电磁仿真软件分析了径向EIO高频结构中的谐振特性与场分布,并采用三维粒子模拟软件开展了注波互作用研究.研究结果表明在工作电压为5 k V,电流为8.48 A时,所设计的径向EIO输出功率达到2.6 k W,热腔工作频率为30.011 GHz,效率为6.1%.展开更多
A terahertz dual-mode extended interaction oscillator (EIO) driven by a pseudospark-sourced sheet electron beam (SEB) was presented.The major advantages of the newly developed circuit include 1) high-density SEB inter...A terahertz dual-mode extended interaction oscillator (EIO) driven by a pseudospark-sourced sheet electron beam (SEB) was presented.The major advantages of the newly developed circuit include 1) high-density SEB interacting with the TM_(11) and TM_(31) modes,respectively,and 2) high output power of over 1 kW at the subterahertz frequency range.Two different types of 2π modes and their output characteristics were studied,and the circuit was optimized to ensure efficient outputs of two standing-wave modes.The three-dimensional (3D) particle-in-cell (PIC) simulation predicts the maximum output power of 1.3 kW with the 3-dB bandwidth of ~0.5 GHz at 303 GHz when operating at the TM_(11)mode,and 3.18 kW with the 3-dB bandwidth of ~0.85 GHz at 364 GHz when operating at the TM_(31)mode.展开更多
文摘提出并研究了一种具有结构紧凑、散热性好、输出功率大等特点的新型扩展互作用结构——径向扩展互作用振荡器(EIO),并推导了小信号理论.利用电磁仿真软件分析了径向EIO高频结构中的谐振特性与场分布,并采用三维粒子模拟软件开展了注波互作用研究.研究结果表明在工作电压为5 k V,电流为8.48 A时,所设计的径向EIO输出功率达到2.6 k W,热腔工作频率为30.011 GHz,效率为6.1%.
基金Supported by the National Natural Science foundation of China(61671116,61771096,11905026)National Key Research and Devel⁃opment Program of China(2019YFA0210202)Fundamental Research Funds for the Central Universities(ZYGX2019Z006,ZYGX2019J012)。
基金the National Natural Science Foundation of China under Grant No.61771096the Fundamental Research Funds for the Central Universities under Grant No.ZYGX2016J059+1 种基金the National Basic Research Program of China under Grant No.2013CB933603the UK Engineering and Physical Sciences Research Council(EPSRC)under Grant No.EP/S00968X/1。
文摘A terahertz dual-mode extended interaction oscillator (EIO) driven by a pseudospark-sourced sheet electron beam (SEB) was presented.The major advantages of the newly developed circuit include 1) high-density SEB interacting with the TM_(11) and TM_(31) modes,respectively,and 2) high output power of over 1 kW at the subterahertz frequency range.Two different types of 2π modes and their output characteristics were studied,and the circuit was optimized to ensure efficient outputs of two standing-wave modes.The three-dimensional (3D) particle-in-cell (PIC) simulation predicts the maximum output power of 1.3 kW with the 3-dB bandwidth of ~0.5 GHz at 303 GHz when operating at the TM_(11)mode,and 3.18 kW with the 3-dB bandwidth of ~0.85 GHz at 364 GHz when operating at the TM_(31)mode.