具有高线性压力适应性人工突触,用于极端环境中的智能计算.
Yang Wang1, Chen-Yang Zhang1, Shun-Xin Li1
1State Key Laboratory of High Pressure and Superhard Materials, College of Physics, Jilin University, Changchun, 130012, China.
Advanced materials (Deerfield Beach, Fla.)
|December 18, 2025
概括
研究人员开发了一种适应压力的人工突触 (PAAS),适用于极端环境. 这种新型设备利用二氧化纳米颗粒,在高压下实现稳定的智能计算,高压可达15.1 GPa.
科学领域:
- 材料科学 材料科学 材料科学
- 纳米技术纳米技术
- 人工智能的人工智能
背景情况:
- 智能计算需要强大的设备,以适应极端环境.
- 高压条件限制了当前智能计算材料的操作稳定性.
研究的目的:
- 为高压应用开发适应压力的人工突触 (PAAS).
- 为了利用VO2纳米颗粒的独特特性,提高压力耐受性.
主要方法:
- 使用VO2 (M1) 纳米粒子制造PAAS.
- 研究M1-到M1'相位过渡及其对电子性质的影响.
- 在1 atm至15.1 GPa的压力下测试PAAS性能.
主要成果:
- 该PAAS表现出稳定的工作电流和优越的仿生可塑性 (109.6%至155.4%的PPF指数).
- 在高压下观察到改善的突触后电流线性 (皮尔森的r从0.64到0.97).
- 使用PAAS的人工神经网络在手写数字识别中实现了95%-97%的准确性.
结论:
- 开发的PAAS显示了智能计算在极端高压环境中的巨大潜力.
- 材料的压力适应性,由VO2相位过渡驱动,确保可靠的设备功能.
- 在高压人工智能和图像处理领域,PAAS显示出应用的前景.
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