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Realization of a communication experiment at 500-GHz band

机译:实现500-GHz频段通信实验的实现

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As a new attempt to expand wireless transmission channel bandwidth, a submillimeter-wave communication experiment has been carried out by using techniques of frequency multiplication of millimeter-wave signal source and high-sensitivity superconducting SIS (Superconductor-Insulator-Superconductor) receiver. The transmitter consists of a 500-GHz frequency quintupler and a 93-GHz varactor-tunable Gunn oscillator with its output frequency modulated via a 10-14 MHz signal source, while the 500-GHz SIS receiver has an IF (Intermediate Frequency) band of 1.1-1.7 GHz and an overall system noise temperature below 400 K. A theoretical analysis is given to prove the principle and engineering feasibility of the experimental communication system. The measured spectra of the received FM (Frequency Modulation) signals with modulation frequencies of 10-14 MHz on a downconverted IF carrier of 1.6 GHz show that effective direct frequency modulation on a transmitting submillimeter-wave carrier of 466 GHz and the reception of the submillimeter-wave FM signals by the 500-GHz SIS receiver have been successfully realized.
机译:作为扩展无线传输信道带宽的新尝试,通过使用毫米波信号源和高灵敏度超导SIS(超导体 - 绝缘体 - 超导体)接收器的频率倍增技术来执行亚倍数钟波通信实验。发射机由500 GHz频率Quintupler和一个93-GHz变容器可调Gunn振荡器组成,其输出频率通过10-14 MHz信号源调制,而500 GHz SIS接收器具有IF(中频)频带1.1-1.7 GHz和整体系统噪声温度低于400 k。理论分析是为了证明实验通信系统的原理和工程可行性。接收的FM(频率调制)信号的测量光谱(频率调制)信号在1.6 GHz载波上的下变频器上的调制频率为10-14 MHz,如果1.6 GHz载波显示出466 GHz的发射外幂波载波上的有效直接频率调制以及淹没倍数-Wave由500 GHz SIS接收器的FM信号已成功实现。

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