High power, high repetition rate laser-based sources for attosecond science
Within the last two decades attosecond science has been established as a novel research field providing insights into the ultrafast electron dynamics that follows a photoexcitation or photoionization process. Enabled by technological advances in ultrafast laser amplifiers, attosecond science has bee...
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Veröffentlicht in: | JPhys photonics 2022-07, Vol.4 (3), p.32001 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Within the last two decades attosecond science has been established as a novel research field providing insights into the ultrafast electron dynamics that follows a photoexcitation or photoionization process. Enabled by technological advances in ultrafast laser amplifiers, attosecond science has been in turn, a powerful engine driving the development of novel sources of intense ultrafast laser pulses. This article focuses on the development of high repetition rate laser-based sources delivering high energy pulses with a duration of only a few optical cycles, for applications in attosecond science. In particular, a high power, high repetition rate optical parametric chirped pulse amplification system is described, which was developed to drive an attosecond pump-probe beamline targeting photoionization experiments with electron-ion coincidence detection at high acquisition rates. |
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ISSN: | 2515-7647 2515-7647 |
DOI: | 10.1088/2515-7647/ac74fb |