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用于连续波250GHz回旋管动态核极化实验的波纹波导和定向耦合器。

Corrugated Waveguide and Directional Coupler for CW 250-GHz Gyrotron DNP Experiments.

作者信息

Woskov Paul P, Bajaj Vikram S, Hornstein Melissa K, Temkin Richard J, Griffin Robert G

机构信息

P. P. Woskov, M. K. Hornstein, and R. J. Temkin are with the Plasma Science and Fusion Center, Massachusetts Institute of Technology, Cambridge, MA 02139 USA (e-mail:

出版信息

IEEE Trans Microw Theory Tech. 2005 Jun;53(6 I):1863-1869. doi: 10.1109/TMTT.2005.848097.

Abstract

A 250-GHz corrugated transmission line with a directional coupler for forward and backward power monitoring has been constructed and tested for use with a 25-W continuous-wave gyrotron for dynamic nuclear polarization (DNP) experiments. The main corrugated line (22-mm internal diameter, 2.4-m long) connects the gyrotron output to the DNP probe input. The directional coupler, inserted approximately midway, is a four-port crossed waveguide beamsplitter design. Two beamsplitters, a quartz plate and ten-wire array, were tested with output coupling of 2.5% (-16 dB) at 250.6 GHz and 1.6% (-18 dB), respectively. A pair of mirrors in the DNP probe transferred the gyrotron beam from the 22-mm waveguide to an 8-mm helically corrugated waveguide for transmission through the final 0.58-m distance inside the NMR magnet to the sample. The transmission-line components were all cold tested with a 248 ± 4-GHz radiometer. A total insertion loss of 0.8 dB was achieved for HE(11) -mode propagation from the gyrotron to the sample with only 1% insertion loss for the 22-mm-diameter waveguide. A clean Gaussian gyrotron beam at the waveguide output and reliable forward power monitoring were achieved for many hours of continuous operation.

摘要

已构建并测试了一条带有定向耦合器的250吉赫兹波纹传输线,用于监测正向和反向功率,该传输线与一台25瓦连续波回旋管配合使用,用于动态核极化(DNP)实验。主波纹线(内径22毫米,长2.4米)将回旋管输出连接到DNP探头输入。插入大约中间位置的定向耦合器采用四端口交叉波导分束器设计。测试了两种分束器,即石英板和十线阵列,在250.6吉赫兹时的输出耦合分别为2.5%(-16分贝)和1.6%(-18分贝)。DNP探头中的一对镜子将回旋管光束从22毫米波导传输到8毫米螺旋波纹波导,以便通过核磁共振磁体内部最后的0.58米距离传输到样品。传输线组件均使用248±4吉赫兹辐射计进行了冷测试。对于从回旋管到样品的HE(11)模传播,总插入损耗为0.8分贝,直径22毫米的波导的插入损耗仅为1%。在连续运行数小时的情况下,在波导输出端获得了干净的高斯回旋管光束,并实现了可靠的正向功率监测。

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