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多电子体系中强场驱动金属纳米尖端隧穿过程中的延迟电子发射

Delayed electron emission in strong-field driven tunnelling from a metallic nanotip in the multi-electron regime.

作者信息

Yanagisawa Hirofumi, Schnepp Sascha, Hafner Christian, Hengsberger Matthias, Kim Dong Eon, Kling Matthias F, Landsman Alexandra, Gallmann Lukas, Osterwalder Jürg

机构信息

Institute for Quantum Electronics, ETH Zürich, CH-8093 Zürich, Switzerland.

Physik-Institut, Universität Zürich, CH-8057 Zürich, Switzerland.

出版信息

Sci Rep. 2016 Oct 27;6:35877. doi: 10.1038/srep35877.

Abstract

Illuminating a nano-sized metallic tip with ultrashort laser pulses leads to the emission of electrons due to multiphoton excitations. As optical fields become stronger, tunnelling emission directly from the Fermi level becomes prevalent. This can generate coherent electron waves in vacuum leading to a variety of attosecond phenomena. Working at high emission currents where multi-electron effects are significant, we were able to characterize the transition from one regime to the other. Specifically, we found that the onset of laser-driven tunnelling emission is heralded by the appearance of a peculiar delayed emission channel. In this channel, the electrons emitted via laser-driven tunnelling emission are driven back into the metal, and some of the electrons reappear in the vacuum with some delay time after undergoing inelastic scattering and cascading processes inside the metal. Our understanding of these processes gives insights on attosecond tunnelling emission from solids and should prove useful in designing new types of pulsed electron sources.

摘要

用超短激光脉冲照射纳米尺寸的金属尖端会由于多光子激发而导致电子发射。随着光场变强,直接从费米能级的隧穿发射变得普遍。这会在真空中产生相干电子波,从而导致各种阿秒现象。在多电子效应显著的高发射电流下工作时,我们能够表征从一种状态到另一种状态的转变。具体而言,我们发现激光驱动隧穿发射的开始由一种特殊的延迟发射通道的出现预示。在这个通道中,通过激光驱动隧穿发射发射出的电子被驱回到金属中,并且一些电子在金属内部经历非弹性散射和级联过程后会在真空中延迟一段时间后重新出现。我们对这些过程的理解为固体的阿秒隧穿发射提供了见解,并且在设计新型脉冲电子源方面应该会证明是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b386/5082369/9034f9f4bf74/srep35877-f1.jpg

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