Nishiura M, Shimizu T, Kobayashi S, Tokuzawa T, Ichinose K, Kubo S
National Institute for Fusion Science, 322-6 Oroshi-cho, Toki, Gifu 509-5292, Japan.
Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8601, Japan.
Rev Sci Instrum. 2021 Mar 1;92(3):034711. doi: 10.1063/5.0041243.
A six-pole Q-band waveguide filter with a notch frequency above the Q-band has been developed for plasma diagnostics. The previous paper [Nishiura et al., J. Instrum. 10, C12014 (2015)] reported that the notch frequency exists within the standard band. In this study, the newly required notch filter extends the function, which prevents a thorny wave from being mixed into an instrument beyond the standard bandwidth of the waveguide. The mode control technique for cavities realizes a deep and sharp filter shape for Q-band notch filters with 56 and 77 GHz notches, respectively. The former filter has an attenuation more than 50 dB at 56.05 GHz and a bandwidth of 1.1 GHz at -3 dB. The latter filter has an attenuation more than 55 dB at 76.95 GHz and a bandwidth of 1.6 GHz at -3 dB. The electron cyclotron emission imaging and the electron cyclotron emission (ECE) diagnostics for the Q-band implemented a pair of the fabricated filters and demonstrated the ECE measurement successfully in the intense stray radiation from a 56 GHz gyrotron.
已开发出一种用于等离子体诊断的六极Q波段波导滤波器,其陷波频率高于Q波段。前一篇论文[Nishiura等人,《仪器仪表杂志》10,C12014(2015)]报道陷波频率存在于标准频段内。在本研究中,新要求的陷波滤波器扩展了功能,可防止棘手的波混入超出波导标准带宽的仪器中。腔体的模式控制技术分别为具有56 GHz和77 GHz陷波的Q波段陷波滤波器实现了深且尖锐的滤波器形状。前一种滤波器在56.05 GHz处的衰减超过50 dB,在-3 dB处的带宽为1.1 GHz。后一种滤波器在76.95 GHz处的衰减超过55 dB,在-3 dB处的带宽为1.6 GHz。用于Q波段的电子回旋辐射成像和电子回旋辐射(ECE)诊断采用了一对制造的滤波器,并在来自56 GHz回旋管的强烈杂散辐射中成功演示了ECE测量。