Laser waveform control of extreme ultraviolet high harmonics from solids

Solid-state high-harmonic sources offer the possibility of compact, high-repetition-rate attosecond light emitters. However, the time structure of high harmonics must be characterized at the sub-cycle level. We use strong two-cycle laser pulses to directly control the time-dependent nonlinear curren...

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Veröffentlicht in:Optics letters 2017-05, Vol.42 (9), p.1816-1819
Hauptverfasser: You, Yong Sing, Wu, Mengxi, Yin, Yanchun, Chew, Andrew, Ren, Xiaoming, Gholam-Mirzaei, Shima, Browne, Dana A, Chini, Michael, Chang, Zenghu, Schafer, Kenneth J, Gaarde, Mette B, Ghimire, Shambhu
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Sprache:eng
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Zusammenfassung:Solid-state high-harmonic sources offer the possibility of compact, high-repetition-rate attosecond light emitters. However, the time structure of high harmonics must be characterized at the sub-cycle level. We use strong two-cycle laser pulses to directly control the time-dependent nonlinear current in single-crystal MgO, leading to the generation of extreme ultraviolet harmonics. We find that harmonics are delayed with respect to each other, yielding an atto-chirp, the value of which depends on the laser field strength. Our results provide the foundation for attosecond pulse metrology based on solid-state harmonics and a new approach to studying sub-cycle dynamics in solids.
ISSN:0146-9592
1539-4794
DOI:10.1364/ol.42.001816