Nanoplasmonic Photoelectron Rescattering in the Multiphoton-Induced Emission Regime

In strong-field laser-matter interactions, energetic electrons can be created by photoemission and a subsequent rescattering and can attain energy as much as 10 times the ponderomotive potential (U_{p}) of the laser field. Here, we show that with the unique combination of infrared laser sources (exp...

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Veröffentlicht in:Physical review letters 2024-07, Vol.133 (3), p.033801, Article 033801
Hauptverfasser: Bánhegyi, Balázs, Kiss, Gellért Zsolt, Pápa, Zsuzsanna, Sándor, Péter, Tóth, Lázár, Péter, László, Rácz, Péter, Dombi, Péter
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Sprache:eng
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Zusammenfassung:In strong-field laser-matter interactions, energetic electrons can be created by photoemission and a subsequent rescattering and can attain energy as much as 10 times the ponderomotive potential (U_{p}) of the laser field. Here, we show that with the unique combination of infrared laser sources (exploiting the quadratic scaling of U_{p}) and plasmonic nanoemitters (which enhance rescattering probability by orders of magnitude) ∼10U_{p} rescattered electrons can be observed in the multiphoton-induced regime. Our experiments correspond well to a model based on the time dependent Schrödinger equation and allowed us to reveal an unexpected aspect of ultrafast electron dynamics in the multiphoton emission regime.
ISSN:0031-9007
1079-7114
1079-7114
DOI:10.1103/PhysRevLett.133.033801