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High-order harmonic generation driven by metal nanotip photoemission: theory and simulations

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arxiv 1309.0349 v1 pith:CXX3D74A submitted 2013-09-02 physics.optics physics.atom-ph

High-order harmonic generation driven by metal nanotip photoemission: theory and simulations

classification physics.optics physics.atom-ph
keywords beenenergyharmoniclasermetaldemonstratedelectronfemtosecond
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present theoretical predictions of high-order harmonic generation (HHG) resulting from the interaction of short femtosecond laser pulses with metal nanotips. It has been demonstrated that high energy electrons can be generated using nanotips as sources; furthermore the recollision mechanism has been proven to be the physical mechanism behind this photoemission. If recollision exists, it should be possible to convert the laser-gained energy by the electron in the continuum in a high energy photon. Consequently the emission of harmonic radiation appears to be viable, although it has not been experimentally demonstrated hitherto. We employ a quantum mechanical time dependent approach to model the electron dipole moment including both the laser experimental conditions and the bulk matter properties. The use of metal tips shall pave a new way of generating coherent XUV light with a femtosecond laser field.

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