Guo Wei, Luo Ji-run, Zhu Min . Design Analysis of a Mode Selective Cavity for Gyrotron Applications[J]. Journal of Electronics & Information Technology, 2006, 28(10): 1971-1974.
Citation:
Guo Wei, Luo Ji-run, Zhu Min . Design Analysis of a Mode Selective Cavity for Gyrotron Applications[J]. Journal of Electronics & Information Technology, 2006, 28(10): 1971-1974.
Guo Wei, Luo Ji-run, Zhu Min . Design Analysis of a Mode Selective Cavity for Gyrotron Applications[J]. Journal of Electronics & Information Technology, 2006, 28(10): 1971-1974.
Citation:
Guo Wei, Luo Ji-run, Zhu Min . Design Analysis of a Mode Selective Cavity for Gyrotron Applications[J]. Journal of Electronics & Information Technology, 2006, 28(10): 1971-1974.
The effects of thickening the cavity wall and constructing a pair of drift tube in a new complex cavity on the operating mode stability for engineering design are analyzed in this article. Some compensating methods for alleviating the effects are discussed, which shows that rationally increasing the radius of the outer cavity in the complex cavity may effectively realize high purity and stability of the operating mode.
Granatstein V L, Levush B, Danly B G, Park R K. A quarter century of research and development. IEEE Trans. Plasma Sci. 1997, 25(6): 1322-1335.[2]Jiang L. Theory for cylindrical, open ended, complex cavities supporting all TE0n modes: Gyrotron application. IEE Proceedings-H, 1991, 138(4): 297-306.[3]Guo H, Wu D S, Liu G, Miao Y H, Qian S Z, Qin W Z. Special complex open-cavity and low-magnetic-field high-power gyrotron[J].IEEE Trans. Plasma Sci.1990, 18(3):326-333[4]郭炜, 罗积润. 一种回旋管新型复合开放式谐振腔的性能分析[J].电子与信息学报.2006, 28(4):765-768浏览