DOE OSTI · 1835456
Electron choreography at the attosecond time scale
Abstract
Abstract In this work, we report on coherent control of electron dynamics in atoms via attosecond pulse-shaping. We show that the photoelectron emission from argon gas produced by absorption of an attosecond pulse train (APT) made of odd and even harmonics can be manipulated along the direction of polarization of the light by tuning the spectral components (amplitude and phase) of the pulse. In addition, we show that APTs produced with a two-color (400- plus 800 nm) femtosecond driving field exhibit high temporal tunability, which is optimized for an intensity ratio between the two colors in the range of 0.1 to 5%.
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Unzicker, B., Vaughan, J., Burrows, S., Tatum, B., Arthur, D., Olsson, T. (ORCID:0000000269842826), Jain, S., Hart, T., Stringer, P., Laurent, G. M. (ORCID:0000000237007412). 2021-02-01. Electron choreography at the attosecond time scale. https://doi.org/10.1088/1367-2630%2Fabdbdf
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