Generation of micro-Joule level coherent quasi-continuum extreme ultraviolet radiation using multi-cycle intense laser-atom interactions

In the present work we report on the current progress of the recently constructed GW attosecond extreme ultraviolet (XUV) source developed at the Institute of Electronic Structure and Laser of the Foundation for Research and Technology-Hellas (I.E.S.L-FO.R.T.H.). By the implementation of a compact-c...

Teljes leírás

Elmentve itt :
Bibliográfiai részletek
Szerzők: Tsafas Vassilis
Lamprou Theocharis
Skantzakis Emmanouil
Nayak Arjun
Charalambidis Dimitris
Tzallas Paraskevas
Orfanos Ioannis
Dokumentumtípus: Cikk
Megjelent: 2023
Sorozat:OPTICS COMMUNICATIONS 535
Tárgyszavak:
doi:10.1016/j.optcom.2023.129359

mtmt:33790118
Online Access:http://publicatio.bibl.u-szeged.hu/39765
LEADER 02379nab a2200289 i 4500
001 publ39765
005 20260416092237.0
008 260416s2023 hu o 000 eng d
022 |a 0030-4018 
024 7 |a 10.1016/j.optcom.2023.129359  |2 doi 
024 7 |a 33790118  |2 mtmt 
040 |a SZTE Publicatio Repozitórium  |b hun 
041 |a eng 
100 1 |a Tsafas Vassilis 
245 1 0 |a Generation of micro-Joule level coherent quasi-continuum extreme ultraviolet radiation using multi-cycle intense laser-atom interactions  |h [elektronikus dokumentum] /  |c  Tsafas Vassilis 
260 |c 2023 
300 |a 8 
490 0 |a OPTICS COMMUNICATIONS  |v 535 
520 3 |a In the present work we report on the current progress of the recently constructed GW attosecond extreme ultraviolet (XUV) source developed at the Institute of Electronic Structure and Laser of the Foundation for Research and Technology-Hellas (I.E.S.L-FO.R.T.H.). By the implementation of a compact-collinear polarization gating arrangement, the generation of a broadband, coherent XUV quasi-continuum produced by the interaction of a many-cycle infrared field with a gas phase medium is achieved. The spectral width of the XUV emission generated in Xenon, is spanning in the range of 17–32 eV and can support isolated pulses of duration in the range from 0.4 fs to 1.3 fs and pulse energy in the 1 μJ level. Theoretical calculations, taking into account the experimental conditions of this work, are supporting the observations, offering also an insight regarding the temporal profile of the emitted radiation. Finally, the high intensity of the produced XUV pulses has been confirmed by investigating the two-XUV-photon double ionization process of Argon atoms. The demonstrated results inaugurate the capability of the beamline of producing intense coherent quasi-continuum XUV radiation, supporting isolated as pulses, that can be exploited in studies of non-linear XUV processes, attosecond pulse metrology and XUV-pump–XUV-probe experiments. © 2023 Elsevier B.V. 
650 4 |a Fizikai tudományok 
700 0 1 |a Lamprou Theocharis  |e aut 
700 0 1 |a Skantzakis Emmanouil  |e aut 
700 0 1 |a Nayak Arjun  |e aut 
700 0 1 |a Charalambidis Dimitris  |e aut 
700 0 1 |a Tzallas Paraskevas  |e aut 
700 0 1 |a Orfanos Ioannis  |e aut 
856 4 0 |u http://publicatio.bibl.u-szeged.hu/39765/1/33790118.pdf  |z Dokumentum-elérés