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可重新配置的memlogic长波红外传感器与超导体
Bingxin Chen1, Huanyi Xue1, Hong Pan1
1State Key Laboratory of Surface Physics and Institute for Nanoelectronic Devices and Quantum Computing, Department of Physics, Fudan University, Shanghai, 200438, China.
Light, science & applications
|April 26, 2024
概括
研究人员开发了一种超导的memlogic传感器,用于长波红外探测. 该设备将光学传感与内存和逻辑集成,使先进的机器视觉和安全通信成为可能.
科学领域:
- 量子计算和传感是量子计算和传感.
- 材料科学与工程 材料科学与工程
- 光电子学和光子学.
背景情况:
- 当前的光学传感器面临的局限性超出了传统的·诺伊曼架构.
- 超导体提供量子有限的光学灵敏度和广泛的频谱覆盖.
- 将逻辑和内存集成到传感器中是先进机器视觉的关键.
研究的目的:
- 报告一款用于长波红外 (LWIR) 检测的新型超导传感器.
- 为了展示可重新配置逻辑系统的传感器内切换功能.
- 使用集成的超材料吸收器来实现高红外灵敏度.
主要方法:
- 在歇斯底里超导体-正常相位过渡中利用了双相稳定性.
- 用于确定性状态切换的合作电脉冲和光脉冲.
- 集成了一种超材料完美吸收器,可提高在12.2μm的红外敏感度.
主要成果:
- 证明了电阻和超导状态之间的决定性切换,持久度> 10^5秒.
- 实现了适合加密通信等应用的弹性,可重新配置的memlogic系统.
- 由于in-situ元材料设计,在12.2μm获得了高红外灵敏度.
结论:
- 开创了全合一的超导传感器,超越了生物视网膜的能力.
- 打开了将视觉感知集成到基于超导体的智能量子机器的道路.
- 开发的传感器技术为下一代计算和传感提供了通往下一代计算和传感的途径.
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