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Optoelectronic clocking system for testing RSFQ circuits up to 20GHz

机译:光电时钟系统,用于测试高达20GHz的RSFQ电路

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Unlike coaxial cable, optical fiber has a bandwidth commensurate with the clock rates of even the fastest rapid single flux quantum (RSFQ) circuits. Employing this advantage, we have developed an optoelectronic clocking system, in which optical pulses from a picosecond laser are delivered via fiber to a superconducting chip, on which metal-semiconductor-metal (MSM) photodiodes generate fast electrical pulses with subpicosecond timing accuracy. An optical pulse splitter, constructed out of beamsplitters, mirrors, and half-wave plates, permits selection of pulse pattern and clock rate from 80.6 MHz up to 20.6 GHz. With a sampling oscilloscope, we have directly observed optical triggering of an RSFQ T flip-flop at frequencies up to 1.3 GHz with a variety of bit patterns. Optical triggering of a Josephson transmission line (JTL) at frequencies up to 20.6 GHz has been verified by precise measurement of the Josephson voltage; this result represents the highest clock rate ever reported for an optical interface for RSFQ circuits
机译:与同轴电缆不同,光纤的带宽与最快的快速单通量量子(RSFQ)电路的时钟速率相当。利用这一优势,我们开发了一种光电时钟系统,其中皮秒激光的光脉冲通过光纤传输到超导芯片,超导芯片上的金属半导体金属(MSM)光电二极管产生具有亚皮秒级定时精度的快速电脉冲。由分束器,反射镜和半波片构成的光学脉冲分束器允许选择脉冲模式和时钟速率,范围从80.6 MHz到20.6 GHz。使用采样示波器,我们已经直接观察到RSFQ T触发器在高达1.3 GHz的频率下具有各种位模式的光触发。精确测量约瑟夫森电压已验证了约29.6 GHz频率上的约瑟夫森传输线(JTL)的光触发;此结果代表了RSFQ电路光接口所报告的最高时钟速率

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