Electronic-Photonic Cryogenic Egress Link

Bozhi Yin, H. Gevorgyan, Deniz Onural, A. Khilo, M. Popović, V. Stojanović
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引用次数: 2

Abstract

A novel coherent optical link is proposed to serve as the interconnection technology between the room temperature and cryogenic temperature environment for quantum computing and high-performance superconducting computing. The tradeoff on the energy efficiency of this link is discussed. A prototype optical transmitter is fabricated in the 45RFSOI CMOS process and characterized at the cryogenic temperature. Measurement results show that this optical transmitter is able to be directly driven by superconducting electronics with millivolt-level voltage swing, and the new link has five times better energy efficiency than the traditional intensity modulation, direct-detection link.
电子-光子低温出口链接
提出了一种新型的相干光链路,作为量子计算和高性能超导计算的室温和低温环境之间的互连技术。讨论了这一环节在能源效率上的权衡。采用45RFSOI CMOS工艺制作了一个原型光发射机,并在低温下进行了表征。测量结果表明,该光变送器能够以毫伏级电压摆幅直接由超导电子驱动,且新型链路的能量效率是传统强度调制、直接检测链路的5倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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