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等离子体近电场增强效应对超快光电子发射的影响:单个 Ag 纳米立方体的相关空间和激光偏振显微镜研究。

Plasmonic near-electric field enhancement effects in ultrafast photoelectron emission: correlated spatial and laser polarization microscopy studies of individual Ag nanocubes.

机构信息

JILA, University of Colorado and National Institute of Standards and Technology, University of Colorado, Boulder, Colorado 80309, United States.

出版信息

Nano Lett. 2012 Sep 12;12(9):4823-9. doi: 10.1021/nl302271u. Epub 2012 Aug 17.

Abstract

Electron emission from single, supported Ag nanocubes excited with ultrafast laser pulses (λ = 800 nm) is studied via spatial and polarization correlated (i) dark field scattering microscopy (DFM), (ii) scanning photoionization microscopy (SPIM), and (iii) high-resolution transmission electron microscopy (HRTEM). Laser-induced electron emission is found to peak for laser polarization aligned with cube diagonals, suggesting the critical influence of plasmonic near-field enhancement of the incident electric field on the overall electron yield. For laser pulses with photon energy below the metal work function, coherent multiphoton photoelectron emission (MPPE) is identified as the most probable mechanism responsible for electron emission from Ag nanocubes and likely metal nanoparticles/surfaces in general.

摘要

通过空间和偏振相关的(i)暗场散射显微镜(DFM)、(ii)扫描光电离显微镜(SPIM)和(iii)高分辨率透射电子显微镜(HRTEM)研究了超快激光脉冲(λ=800nm)激发的单个支撑 Ag 纳米立方体的电子发射。发现激光诱导电子发射的峰值出现在激光偏振方向与立方体对角线一致的情况下,这表明等离子体近场对入射电场的增强对整体电子产率有至关重要的影响。对于光子能量低于金属功函数的激光脉冲,相干多光子光电子发射(MPPE)被确定为 Ag 纳米立方体和可能的金属纳米粒子/表面产生电子发射的最可能机制。

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