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Terahertz Brewster Window for Ultrabroadband Gyrotron Application

机译:用于超宽带回旋管的太赫兹布鲁斯特窗

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A terahertz (THz) Brewster vacuum window has been developed for the newly emerged ultrabroadband gyrotron application. In the simulation, the influences of the slant angle, the thickness, and the dielectric constant of the window plate on the results were systematically analyzed. In the experimental measurement, two THz high-directivity horn antennas were used to produce and collect a quasi-plane wave that travels through the window. The measurement shows that the window transmission coefficient between 0.33 and 0.50 THz is higher than -1 dB. A conventional Brewster window uses an elliptical window plate, resulting in the asymmetrical stress distribution. In this letter, a novel circular symmetrical ceramic-Kovar brazing scheme is applied to mitigate the challenging asymmetrical stress distribution. This Brewster window would promote the development of the broadband THz gyrotron and other high-power THz systems.
机译:太赫兹(THz)Brewster真空窗已经为新兴的超宽带回旋管应用开发。在仿真中,系统地分析了倾斜角,厚度和窗板介电常数对结果的影响。在实验测量中,使用了两个太赫兹高指向性号角天线来产生并收集穿过窗口的准平面波。测量表明,在0.33和0.50 THz之间的窗口透射系数高于-1 dB。传统的布鲁斯特窗使用椭圆形的窗板,导致应力分布不对称。在这封信中,采用了新颖的圆形对称陶瓷-科瓦合金钎焊方案来缓解挑战性的不对称应力分布。布鲁斯特窗口将促进宽带太赫兹回旋管和其他大功率太赫兹系统的发展。

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