High-order harmonic generation in a microfluidic glass device

We report on the efficient generation of high-order harmonics in helium gas inside complex glass micro-devices fabricated by femtosecond laser micromachining. By exploiting the three-dimensional capabilities and extreme flexibility of this fabrication technique we developed fluidic micro-structures...

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Veröffentlicht in:JPhys photonics 2020-04, Vol.2 (2), p.24005
Hauptverfasser: Ciriolo, A G, Martínez Vázquez, R, Tosa, V, Frezzotti, A, Crippa, G, Devetta, M, Faccialá, D, Frassetto, F, Poletto, L, Pusala, A, Vozzi, C, Osellame, R, Stagira, S
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Sprache:eng
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Zusammenfassung:We report on the efficient generation of high-order harmonics in helium gas inside complex glass micro-devices fabricated by femtosecond laser micromachining. By exploiting the three-dimensional capabilities and extreme flexibility of this fabrication technique we developed fluidic micro-structures in a fused-silica substrate that allowed us to achieve accurate control of the gas density inside a micrometer-sized microchannel. As a result, we achieved a broadband spectrum of extreme ultraviolet (XUV) radiation which extends up to 200 eV and we observed a considerable increase in the harmonics generation efficiency if compared with traditional harmonic generation in gas jets. We foresee that the application of femosecond-laser-micromachined glass devices to high-order harmonics generation can be extended to more complex on-chip systems including different functionalities, thus opening the possibility to future miniaturization of XUV and Attosecond beamlines.
ISSN:2515-7647
2515-7647
DOI:10.1088/2515-7647/ab7d81