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Confinement of Low-Energy Electrons Near Metallic Surfaces for Plasmon Generation

机译:用于等离子体生成的金属表面附近的低能电子的限制

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A novel technique is used in studying the energy loss spectrum of aloof (nontouching) electrons with surfaces. Metallic foils perforated by microchannels restrict the maximum impact parameter to the channel radius (20 to 200 nm). The passage of electrons (20 to 2000 eV) near the cylinder walls results in prominent energy-loss structure. In silver, a resonance loss peak at 3.5 to 3.6 eV is attributed to the formation of surface plasmons on the silver channels. The problem is modeled by a classical calculation of a charge moving parallel to a plane surface whose response is given by tabulated optical properties. The differential probability is calculated assuming the lower limit to the impact parameter is determined by surface roughness. The calculations are compared with the experimental data. (ERA citation 09:048634)

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