由激光诱导对称工程启用的一种自动供电的极化敏感的神经形态视觉设备
Jin Peng1,2, Guisheng Zou1,2, Zehua Li1,2
1State Key Laboratory of Clean and Efficient Turbomachinery Power Equipment, Department of Mechanical Engineering, Tsinghua University, Beijing 100084, China.
ACS nano
|February 4, 2026
概括
研究人员开发了一种新的激光工艺,以创建一个自动供电,偏振敏感的视觉设备. 这种多功能神经形态设备集成了能量收集,传感和计算,用于先进的边缘计算应用程序.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术纳米技术
- 边缘计算 边缘计算
背景情况:
- 边缘计算需要多功能设备,集成能源采集,传感和计算.
- 目前的方法往往涉及复杂的配置,用于单个设备的功能.
研究的目的:
- 开发一种用于制造自动供电,偏振敏感的神经形态视觉装置的简单方法.
- 为应对创建边缘计算内在多功能设备的挑战.
主要方法:
- 使用超快激光诱导对称工程 (LISE) 制造基于MoTe2的架构.
- 工程局部化相位过渡用于同时能量带和晶体结构对称性修改.
- 在工程FeFET中利用光伏挥发性内存进行储库计算.
主要成果:
- 通过LISE实现了能量带和晶体结构的同时对称工程.
- 展示了一种具有内置光伏效应和偏振灵敏度的自动供电设备.
- 使用该设备实现完全自动供电的全光电池计算,用于使用该设备进行水下成像.
结论:
- 在LISE过程中,可以创建高性能多功能神经形态系统.
- 超快激光器是用于先进设备应用中操纵材料性能的有效工具.
- 开发的设备提供了一种强大的硬件级方法,通过光极化和门电压调整计算.
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