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来自尖锐金纳米锥的少电子态的超非线性亚周期光发射

Ultra-Nonlinear Subcycle Photoemission of Few-Electron States from Sharp Gold Nanotapers.

作者信息

Hergert Germann, Lampe Rasmus, Wöste Andreas, Lienau Christoph

机构信息

Institut für Physik and Center for Nanoscale Dynamics (CeNaD), Carl von Ossietzky Universität Oldenburg, Carl-von-Ossietzky Str. 9-11, 26129 Oldenburg, Germany.

出版信息

Nano Lett. 2024 Sep 4;24(35):11067-11074. doi: 10.1021/acs.nanolett.4c03240. Epub 2024 Aug 20.

Abstract

The generation of ultrashort electron wavepackets is crucial for the development of ultrafast electron microscopes. Recent studies on Coulomb-correlated few-electron number states, photoemitted from sharp metallic tapers, have shown emission nonlinearities in the multiphoton photoemission regime which scale with the electron number. Here, we study few-electron photoemission from gold nanotapers triggered by few-cycle near-infrared pulses, demonstrating extreme 20th-order nonlinearities for electron triplets. We report interferometric autocorrelation traces of the electron yield that are quenched to a single emission peak with subfemtosecond duration due to these high nonlinearities. The modulation of the emission yield by the carrier-envelope phase suggests that electron emission predominantly occurs during a single half cycle of the driving laser field. When applying a bias voltage to the tip, recollisions in the electron trajectories are suppressed and coherent subcycle electron beams are generated with promising prospects for ultrafast electron microscopy with subcycle time resolution.

摘要

超短电子波包的产生对于超快电子显微镜的发展至关重要。最近对从尖锐金属锥发射的库仑相关少电子数态的研究表明,在多光子光发射 regime 中存在发射非线性,其与电子数成比例。在这里,我们研究了由少周期近红外脉冲触发的金纳米锥的少电子光发射,证明了电子三重态的极端 20 阶非线性。我们报告了电子产率的干涉自相关迹线,由于这些高非线性,其被淬灭到具有亚飞秒持续时间的单个发射峰。载流子 - 包络相位对发射产率的调制表明,电子发射主要发生在驱动激光场的单个半周期内。当向尖端施加偏置电压时,电子轨迹中的再碰撞被抑制,并且产生了具有亚周期时间分辨率的超快电子显微镜前景广阔的相干亚周期电子束。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44ac/11378295/acc2a78afc08/nl4c03240_0001.jpg

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