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Optical data communication between Josephson-junction circuits and room-temperature electronics

机译:约瑟夫森结电路与室温电子设备之间的光学数据通信

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摘要

The feasibility of optical data transmission to and from Josephson junction circuits, using metal-semiconductor-metal (MSM) photodiodes and GaAs/AlGaAs semiconductor laser diodes with sub-mA threshold current, is demonstrated. Standard devices can be used with the exception of a cooled GaAs detector. It is shown that silicon MSM detectors compatible with Josephson junction circuits can be fabricated. While these detectors show large photoconductive effects at room temperature they behave as good-quality photodiodes at low temperatures. Power dissipation in the laser diode scales with temperature while maintaining the modulation frequency. It is also shown that the combination of a laser diode and a photodiode provides the voltage gain needed to interface Josephson-junction circuits with room-temperature electronics. Experimental results on MSM detectors and laser diodes are presented. Expected power dissipation is below 1 mW per input/output (I/O) at a data rate of 1 Gb/s.
机译:演示了使用金属-半导体-金属(MSM)光电二极管和具有亚mA阈值电流的GaAs / AlGaAs半导体激光二极管来往约瑟夫森结电路的光学数据传输的可行性。除冷却的GaAs检测器外,均可使用标准设备。结果表明,可以制造与约瑟夫森结电路兼容的硅MSM检测器。尽管这些检测器在室温下显示出较大的光电导效应,但它们在低温下仍表现为高质量的光电二极管。激光二极管中的功耗随温度变化,同时保持调制频率。还显示出,激光二极管和光电二极管的组合提供了将约瑟夫森结电路与室温电子设备对接所需的电压增益。介绍了MSM检测器和激光二极管的实验结果。在1 Gb / s的数据速率下,每个输入/输出(I / O)的预期功耗低于1 mW。

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