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Applying microfabrication to helical vacuum electron devices for THz applications

机译:将微制造应用于螺旋真空电子器件,用于THz应用

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A new class of helical THz vacuum electron devices is under development using unconventional applications of microfabrication technology, modern computer modeling, and novel materials. The resulting slow wave circuits consist of a coil of gold wire, smaller in outside diameter than a human hair, supported by a thin diamond sheet and suspended within a diamond box. This configuration will extend the operating range of the helical slow wave circuit into the THz frequency band. Previously, the advantages of the wide bandwidth and high efficiency of the helical slow wave circuit have been available only for operation at frequencies below 50 or 60 GHz because of the difficulty of winding small coils of wire and because it is impossible to transmit a significant beam current through the small aperture offered by the center of the helix. These obstacles are overcome by fabricating the helices lithographically and by passing the electron beam around the outside of the helix. The design and fabrication of a 650 GHz backward wave oscillator (BWO) will be described as well as proposed applications of this technology to traveling wave tubes (TWTs) operating at frequencies as high as 1.0 THz. A THz amplifier, possibly with multioctave bandwidth, would have a wide range of important applications.
机译:使用微制造技术,现代计算机建模和新材料的非传统应用,正在开发新的螺旋THz真空电子设备。由此产生的慢波电路由金属丝的线圈组成,外径小于人的头发,由薄金刚石板支撑并悬挂在钻石箱内。该配置将螺旋慢波电路的工作范围扩展到THz频带中。以前,螺旋慢波电路的宽带宽和高效率的优点仅适用于50或60 GHz的频率下的操作,因为围绕线圈的难度,并且因为不可能传输显着的光束电流通过螺旋中心提供的小孔径。通过在光刻上制造螺旋并通过将电子束传递在螺旋外部的外部来克服这些障碍物。将描述650GHz反向波振荡器(BWO)的设计和制造,以及该技术的提出应用于在高达1.0THz的频率下运行的波管(TWT)。 THZ放大器可能具有多电流带宽,可以具有广泛的重要应用。

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