Energy-Resolved Ultrashort Delays of Photoelectron Emission Clocked by Orthogonal Two-Color Laser Fields

A phase-controlled orthogonal two-color (OTC) femtosecond laser pulse is employed to probe the time delay of photoelectron emission in the strong-field ionization of atoms. The OTC field spatiotemporally steers the emission dynamics of the photoelectrons and meanwhile allows us to unambiguously dist...

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Veröffentlicht in:Physical review letters 2017-04, Vol.118 (14), p.143203-143203, Article 143203
Hauptverfasser: Gong, Xiaochun, Lin, Cheng, He, Feng, Song, Qiying, Lin, Kang, Ji, Qinying, Zhang, Wenbin, Ma, Junyang, Lu, Peifen, Liu, Yunquan, Zeng, Heping, Yang, Weifeng, Wu, Jian
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Sprache:eng
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Zusammenfassung:A phase-controlled orthogonal two-color (OTC) femtosecond laser pulse is employed to probe the time delay of photoelectron emission in the strong-field ionization of atoms. The OTC field spatiotemporally steers the emission dynamics of the photoelectrons and meanwhile allows us to unambiguously distinguish the main and sideband peaks of the above-threshold ionization spectrum. The relative phase shift between the main and sideband peaks, retrieved from the phase-of-phase of the photoelectron spectrum as a function of the laser phase, gradually decreases with increasing electron energy, and becomes zero for the fast electron which is mainly produced by the rescattering process. Furthermore, a Freeman resonance delay of 140±40 attoseconds between photoelectrons emitted via the 4f and 5p Rydberg states of argon is observed.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.118.143203