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首页> 外文期刊>Journal of Micromechanics and Microengineering >Microfabrication of diamond-based slow-wave circuits for mm-wave and THz vacuum electronic sources
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Microfabrication of diamond-based slow-wave circuits for mm-wave and THz vacuum electronic sources

机译:用于毫米波和太赫兹真空电子源的基于金刚石的慢波电路的微细加工

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摘要

Planar and helical slow-wave circuits for THz radiation sources have been made using novel microfabrication and assembly methods. A biplanar slow-wave circuit for a 650 GHz backward wave oscillator (BWO) was fabricated through the growth of diamond into high aspect ratio silicon molds and the selective metallization of the tops and sidewalls of 90 μm tall diamond features using lithographically created shadow masks. Helical slow-wave circuits for a 650 GHz BWO and a 95 GHz traveling wave tube were created through the patterning of trenches in thin film diamond, electroplating of gold half-helices, and high accuracy bonding of helix halves. The development of new techniques for the microfabrication of vacuum electronic components will help to facilitate compact and high-power sources for terahertz range radiation.
机译:太赫兹辐射源的平面和螺旋慢波电路已经使用新颖的微细加工和组装方法制成。 650 GHz反向波振荡器(BWO)的双平面慢波电路是通过将钻石生长到高深宽比硅模中,以及使用光刻创建的荫罩对90μm高的钻石特征的顶部和侧壁进行选择性金属化而制成的。 650 GHz BWO和95 GHz行波管的螺旋慢波电路是通过对薄膜金刚石中的沟槽进行构图,电镀金半螺旋以及对半螺旋的高精度键合而创建的。真空电子元件的微细加工新技术的开发将有助于促进太赫兹范围辐射的紧凑和高功率源。

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