材料科学
光热治疗
皮秒
光电子学
逻辑门
炸薯条
纳米技术
光热效应
光学
电子工程
计算机科学
电信
激光器
物理
工程类
作者
Can Wang,Jianhong Cao,Jianli Guo,Chao Guan,Kai Wang,Qingbin Zhang,Peixiang Lu
标识
DOI:10.1002/adom.202403528
摘要
Abstract On‐chip electronic devices driven by ultrafast light represent a promising approach to surpass traditional information processing speeds. However, practical implementation has been limited by the requirement for material with complex heterostructure and femtosecond lasers with high pulse energy, carrier‐envelope phase stability, and few‐cycle durations. To address this limitation, an on‐chip logic gate is developed on a metallic material platform based on the photothermoelectric effect (PTE) and plasma resonance absorption of gold. By manipulating the light polarization, hot carrier migration is controlled, achieving a high polarization ratio and bipolar response. Meanwhile, time‐resolved transient absorption spectroscopy demonstrates that the switching time is on the sub‐picosecond scale. The logic gate used two picojoule‐level laser pulses as inputs, outputting nanoampere‐level currents with controllable polarity. This design provides a convenient fabrication process, promising for large‐scale high speed logic computing devices.
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