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COMPACT TUNEABLE MICROWAVE TERAHERTZ SOURCE

机译:紧凑可调微波太赫兹源

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Recently, it has been suggested that the next generation of millimetre/terahertz wave devices should be the result of the combination of the virtues of vacuum tubes with solid - state microfabrication methods. Vacuum devices can be very efficient if what is called a depressed collector system is used, so much so that efficiencies as high as 40% are commonplace at microwave frequencies. In addition, the electron mobility is essentially infinite, whereas in a solid-state component, carrier mobility is a serious limitation and leads to device heating problems and reduced efficiency. On the other hand, solid-state fabrication methods lead to micron size accuracy, with good yields and the economy of mass production, so that it is now possible to construct the miniature vacuum electronic device components required for operation at very short wavelengths. In addition, electron guns manufactured in silicon are now available, and these operate at much lower temperatures and produce higher beam current densities than are achievable with conventional thermionic emitters. It has recently been proposed that a folded waveguide travelling wave tube could be constructed using silicon microfabrication technology. When configured as an oscillator this device could provide a high power (>100mW), highly efficient(>15%), reliable, compact and cheap source for the Terahertz Gap. This paper will present a comprehensive up to date on the current status of Liverpool John Moores University electromagnetic wave.
机译:近来,已经提出了下一代毫米/太赫兹波设备应该是真空管与固体的优点的组合的结果 - 状态的微细加工方法。真空装置可以是非常有效的,如果是所谓的凹陷收集器系统被使用,以至于效率高达40%是在微波频率司空见惯。另外,电子迁移率是基本上无限的,而在固态组分,载流子迁移是一个严重的限制,并导致装置加热的问题和降低工作效率。在另一方面,固态制造方法导致微米尺寸的精度,以良好的收率和大规模生产的经济性,这样现在有可能在非常短的波长来构造操作所需的微型真空电子装置部件。另外,在硅制的电子枪现在是可用的,并且这些操作在低得多的温度和产生比与传统热离子发射器可实现的更高束电流密度。最近已经提出了在折叠波导行波管可以使用硅微加工技术来构建。当配置为振荡器此装置可以提供高功率(> 100mW的),高效率(> 15%),可靠,紧凑和廉价的来源为太赫兹差距。本文将提供一个全面的了解最新的利物浦约翰摩尔斯大学的电磁波的当前状态。

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