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Electron Bernstein wave heating and emission measurement through the very narrow O-X-B mode conversion window in the LHD

机译:通过LHD中的非常窄的O-X-B模式转换窗口,电子伯尔尼斯坦波加热和发射测量

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In the large helical device (LHD), the theoretically predicted width of the ordinary-extraordinary-electron Bernstein wave (O-X-B) mode conversion (MC) window is comparable to the beam width and the power deposition is located in the off-axis region if the 77GHz fundamental electron cyclotron (EC) wave of is launched from an existing horizontal port antenna. In the experiment, the actual MC window location was looked for with changing the aiming. The effective aiming with that the increase of the stored energy was observed was two degrees apart from the location of the theoretical MC window at a maximum. Measurement of the waves originated from the thermally emitted EBW and radiated via the B-X-O mode conversion process is effective to improve the accuracy of the theoretical prediction with comparison between the theoretical and the experimental results. The theoretical prediction suggests that the width of the MC window of the fundamental 77GHz EC wave can be expanded if the lower port antenna is used. On the other hand, the MC window of the second harmonic 154GHz EC wave is blocked by horizontal port wall if another horizontal port antenna is used. It is required to move the final mirror of the quasi-optical antenna toward the plasma surface. Focusing of the beam at the plasma cutoff is (PC) also necessary for the effective mode conversion.
机译:在大螺旋设备(LHD)中,普通非凡 - 电子伯恩斯坦波(OXB)模式转换(MC)窗口的理论上预测的宽度与光束宽度相当,如果存在电源沉积在轴外区域中从现有的水平端口天线发射了77GHz基本电子回旋(EC)波浪。在实验中,寻找实际的MC窗口位置,随着旨在改变瞄准。观察到储存能量的增加的有效旨在与最大理论MC窗口的位置分开两度。通过B-X-O模式转换过程源于热发射的EBW的波的测量是有效的,可以有效地提高理论和实验结果之间的理论预测的准确性。理论预测表明,如果使用下部端口天线,则可以扩展基本77GHz EC波的MC窗口的宽度。另一方面,如果使用另一个水平端口天线,则第二次谐波154GHz EC波的MC窗口被水平端口壁阻挡。需要将准光天线的最终镜子朝向等离子体表面移动。在等离子体截止端的光束的聚焦是(PC)也需要有效模式转换。

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