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Radio frequency surface plasma oscillations: electrical excitation and detection by Ar/Ag(111)

机译:射频表面等离子体振荡:电激发和Ar / Ag(111)检测

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摘要

We electrically excite surface plasma oscillations on a Ag(111) single crystal by alternating electric charging at radio frequency. The radio frequency signal energy of 2.2 μeV, used to induce surface plasma oscillations, is about 5 to 6 orders of magnitude lower than the plasmon energies reachable by optical excitation or electron impact. The detection of the surface plasma oscillations is achieved by nano-fabricated 2D single-crystal sensor-islands of Ar atoms, which are shown by imaging with a scanning tunneling microscope to restructure in response to the radio frequency surface plasma oscillations, providing nanometer spatial resolution and a characteristic decay time of ≈150 ns.
机译:通过在射频上交替充电,我们电激发了Ag(111)单晶上的表面等离子体振荡。用于引发表面等离子体振荡的2.2μeV的射频信号能量比通过光激发或电子撞击可达到的等离子体能量低约5至6个数量级。表面等离子体振荡的检测是通过Ar纳米制造的二维单晶传感器孤岛实现的,该孤岛通过扫描隧道显微镜成像以响应射频表面等离子体振荡而重构,从而提供纳米级的空间分辨率,从而显示出来衰减时间约为150 ns。

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