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High-efficiency planar Schottky diode based submillimeter-wave frequency multipliers optimized for high-power operation

机译:针对大功率工作而优化的基于高效平面肖特基二极管的亚毫米波倍频器

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We report on a new series of millimeter and submillimeter-wave frequency multipliers specifically optimized for very high-power operation in order to meet the requirements of next generation terahertz instruments for Astrophysics, Planetary science, Earth science and radar imaging applications. New frequency multiplier chips have been designed and fabricated in the 100 GHz to 1 THz range focusing on higher power operation. Initial tests have shown efficiencies of around 30% for a single-chip 105-120 GHz tripler, and 25% for a single-chip 170-200 GHz doubler, when pumped with 500 mW. These results correspond to a factor of 2-3 improvement with regards to previous designs at these frequencies. Similar improvements are expected for the new designs at higher frequencies.
机译:我们报告了一系列专门针对超高功率运行而优化的毫米波和亚毫米波倍频器系列,以满足下一代太赫兹仪器在天体物理学,行星科学,地球科学和雷达成像应用中的需求。新的倍频器芯片已经在100 GHz至1 THz的范围内进行了设计和制造,专注于更高功率的工作。初始测试显示,在以500 mW的功率泵浦时,单芯片105-120 GHz三倍频器的效率约为30%,而单芯片170-200 GHz双倍频器的效率为25%。这些结果与在这些频率下的先前设计相比,提高了2-3倍。对于更高频率的新设计,预计会有类似的改进。

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