Chen Bingxin, Xue Huanyi, Pan Hong, Zhu Liping, Yan Xiaomi, Wang Jingzhe, Song Yanru, An Zhenghua
State Key Laboratory of Surface Physics and Institute for Nanoelectronic Devices and Quantum Computing, Department of Physics, Fudan University, Shanghai, 200438, China.
ShanghaiTech Quantum Device Lab, ShanghaiTech University, Shanghai, 201210, China.
Light Sci Appl. 2024 Apr 26;13(1):97. doi: 10.1038/s41377-024-01424-2.
Optical sensors with in-cell logic and memory capabilities offer new horizons in realizing machine vision beyond von Neumann architectures and have been attempted with two-dimensional materials, memristive oxides, phase-changing materials etc. Noting the unparalleled performance of superconductors with both quantum-limited optical sensitivities and ultra-wide spectrum coverage, here we report a superconducting memlogic long-wave infrared sensor based on the bistability in hysteretic superconductor-normal phase transition. Driven cooperatively by electrical and optical pulses, the device offers deterministic in-sensor switching between resistive and superconducting (hence dissipationless) states with persistence > 10 s. This results in a resilient reconfigurable memlogic system applicable for, e.g., encrypted communications. Besides, a high infrared sensitivity at 12.2 μm is achieved through its in-situ metamaterial perfect absorber design. Our work opens the avenue to realize all-in-one superconducting memlogic sensors, surpassing biological retina capabilities in both sensitivity and wavelength, and presents a groundbreaking opportunity to integrate visional perception capabilities into superconductor-based intelligent quantum machines.
具有片上逻辑和存储功能的光学传感器为超越冯·诺依曼架构实现机器视觉开辟了新视野,人们已尝试用二维材料、忆阻氧化物、相变材料等实现这一目标。鉴于超导体具备量子极限光学灵敏度和超宽光谱覆盖范围的无与伦比的性能,我们在此报告一种基于滞后超导体 - 正常相变双稳性的超导存储逻辑长波红外传感器。在电脉冲和光脉冲的协同驱动下,该器件能在电阻态和超导(即无耗散)态之间进行确定性的片上切换,持续时间大于10秒。这造就了一个适用于加密通信等领域的弹性可重构存储逻辑系统。此外,通过其原位超材料完美吸收体设计,在12.2μm处实现了高红外灵敏度。我们的工作为实现一体化超导存储逻辑传感器开辟了道路,在灵敏度和波长方面超越了生物视网膜的能力,并为将视觉感知能力集成到基于超导体的智能量子机器中提供了一个开创性的机会。