Revealing the Sub-Barrier Phase using a Spatiotemporal Interferometer with Orthogonal Two-Color Laser Fields of Comparable Intensity

We measure photoelectron momentum distributions of Ar atoms in orthogonally polarized two-color laser fields with comparable intensities. The synthesized laser field is used to manipulate the oscillating tunneling barrier and the subsequent motion of electrons onto two spatial dimensions. The subcyc...

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Veröffentlicht in:Physical review letters 2017-08, Vol.119 (7), p.073201-073201, Article 073201
Hauptverfasser: Han, Meng, Ge, Peipei, Shao, Yun, Liu, Ming-Ming, Deng, Yongkai, Wu, Chengyin, Gong, Qihuang, Liu, Yunquan
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Sprache:eng
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Zusammenfassung:We measure photoelectron momentum distributions of Ar atoms in orthogonally polarized two-color laser fields with comparable intensities. The synthesized laser field is used to manipulate the oscillating tunneling barrier and the subsequent motion of electrons onto two spatial dimensions. The subcycle structures associated with the temporal double-slit interference are spatially separated and enhanced. We use such a spatiotemporal interferometer to reveal sub-barrier phase of strong-field tunneling ionization. This study shows that the tunneling process transfers the initial phase onto momentum distribution. Our work has the implication that the sub-barrier phase plays an indispensable role in photoelectron interference processes.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.119.073201