首页> 外文期刊>Radiophysics and quantum electronics >THE DIAMOND WINDOW WITH BORON-DOPED LAYERS FOR THE OUTPUT OF MICROWAVE RADIATION AT HIGH PEAK AND AVERAGE POWER LEVELS
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THE DIAMOND WINDOW WITH BORON-DOPED LAYERS FOR THE OUTPUT OF MICROWAVE RADIATION AT HIGH PEAK AND AVERAGE POWER LEVELS

机译:具有硼掺杂层的钻石窗,用于在高峰和平均功率水平下输出微波辐射

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摘要

We propose a novel design of the barrier window for the output of microwave radiation at high peak and average power levels. A window based on a plate of polycrystalline CVD diamond with thin (nanometer-thick) boron-doped layers with increased conductivity is considered. Such a window, which retains the low radiation loss due to the small total thickness of the conductive layers and the high thermal conductivity inherent in diamond, prevents accumulation of a static charge on its surface, on the one hand, and allows one to produce a static electric field on the surface of the doped layer, which impedes the development of a multipactor discharge, on the other hand. In this case, a high level of the power of the transmitted radiation and a large passband width are ensured by choosing the configuration of the field in the form of a traveling wave inside the window.
机译:我们提出了一种新颖的屏障窗口设计,用于高峰和平均功率水平的微波辐射输出。 考虑基于具有薄(纳米厚的)硼掺杂层的多晶CVD金刚石板的窗口被考虑为具有增加的导电性的薄片掺杂层。 这种窗口,其由于导电层的总厚度和金刚石中固有的较小的总厚度而导致的低辐射损失,防止了一方面的表面上的静电充电积聚,并允许一个人产生一个 掺杂层的表面上的静电场,其另一方面阻碍了多移能势放电的开发。 在这种情况下,通过选择窗口内的行驶波形的形式来确保透射辐射的高电平和大通带宽的功率。

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