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arxiv: 1304.0034 · v2 · pith:VFC2Z7XHnew · submitted 2013-03-29 · ⚛️ physics.optics · physics.plasm-ph

Generation and Bistability of a Waveguide Nanoplasma Observed by Enhanced Extreme-Ultraviolet Fluorescence

classification ⚛️ physics.optics physics.plasm-ph
keywords generationbistabilityextreme-ultravioletfluorescenceintensityobservedopticalstrong
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We present a study of the highly nonlinear optical excitation of noble gases in tapered hollow waveguides using few-femtosecond laser pulses. The local plasmonic field enhancement induces the generation of a nanometric plasma, resulting in incoherent extreme-ultraviolet fluorescence from optical transitions of neutral and ionized xenon, argon, and neon. Despite sufficient intensity in the waveguide, high-order harmonic generation is not observed. The fluorescent emission exhibits a strong bistability manifest as an intensity hysteresis, giving strong indications for multistep collisional excitations.

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