索马
神经形态工程学
计算机科学
电阻器
约瑟夫森效应
快速单通量量子
CMOS芯片
电子线路
功率消耗
炸薯条
光电子学
物理
材料科学
电气工程
超导电性
功率(物理)
人工神经网络
电压
神经科学
工程类
凝聚态物理
人工智能
生物
电信
量子力学
作者
Mustafa Altay Karamuftuoglu,Ali Bozbey,Sasan Razmkhah
标识
DOI:10.1109/tasc.2023.3270766
摘要
Neuromorphic computing and artificial neurons have been shown to improve the solution for some of the complex problems for conventional computers. We present a spiking soma Josephson junction-based soma (JJ-Soma) circuit that consists of a double-junction SQUID interfered with a resistor (threshold loop), a decaying superconductor loop cut by a resistor, which is coupled to the SQUIDlike structure. The proposed soma has three main properties: 1) ultrahigh-speed operation with minimal power consumption; 2) compatibility with standard foundry processes that allow fabrication with the available infrastructure; and 3) compatibility with conventional single flux quantum (SFQ) logic gates, which enables the design and implementation of complicated networks. Each soma circuit covers 40 µm × 80 µm area on-chip with different activation functions. The circuits are fabricated in a commercial foundry for superconductors and they have been implemented and demonstrated experimentally.
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