阿秒
角分辨光电子能谱
电子
反向光电发射光谱
碳纳米管
物理
极端紫外线
光子学
凝聚态物理
材料科学
光电子学
原子物理学
电子结构
纳米技术
光学
激光器
超短脉冲
量子力学
作者
Chi Li,Ke Chen,Mengxue Guan,Xiaowei Wang,Xu Zhou,Feng Zhai,Jiayu Dai,Zhenjun Li,Zhipei Sun,Sheng Meng,Kaihui Liu,Qing Dai
标识
DOI:10.1038/s41467-019-12797-z
摘要
Strong-field photoemission produces attosecond (10-18 s) electron pulses that are synchronized to the waveform of the incident light. This nonlinear photoemission lies at the heart of current attosecond technologies. Here we report a new nonlinear photoemission behaviour-the nonlinearity in strong-field regime sharply increases (approaching 40th power-law scaling), making use of sub-nanometric carbon nanotubes and 800 nm pulses. As a result, the carrier-envelope phase sensitive photoemission current shows a greatly improved modulation depth of up to 100% (with a total modulation current up to 2 nA). The calculations reveal that the behaviour is an interplay of valence band optical-field emission with charge interaction, and the nonlinear dynamics can be tunable by changing the bandgap of carbon nanotubes. The extreme nonlinear photoemission offers a new means of producing extreme temporal-spatial resolved electron pulses, and provides a new design philosophy for attosecond electronics and photonics.
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