低噪声毫米波肖特基混频器

Martin V. Schneider
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引用次数: 4

摘要

半导体晶体生长和薄膜光刻技术的最新进展已被证明有助于构建具有极低噪声温度的毫米波肖特基混频器。这些混频器在短程通信接收器、成像辐射计、探测大气中的痕量分子和射电天文观测方面看起来很有吸引力。讨论了混合过程所需的金属-半导体接触(肖特基二极管)的器件物理特性,并描述了制造所需结和电路几何形状的新技术。传统和次谐波泵浦混频器建立与波导元件和带状线电路进行了处理。本文报道了使用分子束外延二极管和常规气相外延二极管在30-300 GHz频率范围内对低温冷却和室温混合器进行的测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Noise Millimeter-Wave Schottky Mixers
Recent developments in the fields of semiconductor crystal growth and thin film lithography have proven to be useful in constructing millimeter-wave Schottky mixers with very low noise temperatures. These mixers look attractive for use in short-haul communication receivers, imaging radiometers, for detection of trace molecules in the atmosphere and for radio astronomical observations. The device physics of the metal-semiconductor contact (Schottky diode) which is needed for the mixing process is discussed and novel techniques to fabricate the required junction and circuit geometries are described. Conventional and subharmonically pumped mixers built with waveguide components and stripline circuits are treated. Results of tests performed on cryogenically cooled and room temperature mixers built in the 30-300 GHz frequency range using molecular beam epitaxy diodes and conventional vapor phase epitaxy diodes are reported.
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