Attosecond control of spin polarization in electron–ion recollision driven by intense tailored fields

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Date
2017-07-07
Volume
19
Issue
7
Journal
Series Titel
Book Title
Publisher
[Bad Honnef] : Dt. Physikalische Ges.
Abstract

Tunnel ionization of noble gas atoms driven by a strong circularly polarized laser field in combination with a counter-rotating second harmonic generates spin-polarized electrons correlated to the spin-polarized ionic core. Crucially, such two-color field can bring the spin-polarized electrons back to the parent ion, enabling the scattering of the spin-polarized electron on the spin-polarized parent ion. Here we show how one can control the degree of spin polarization as a function of electron energy and recollision time by tuning the laser parameters, such as the relative intensities of the counter-rotating fields. The attosecond precision of the control over the degree of spin polarization opens the door for attosecond control and spectroscopy of spin-resolved dynamics.

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Keywords
attosecond physics, electronion recollision, spin polarization, strong laser fields
Citation
Ayuso, D., Jiménez-Galán, A., Morales, F., Ivanov, M., & Smirnova, O. (2017). Attosecond control of spin polarization in electron–ion recollision driven by intense tailored fields. 19(7). https://doi.org//10.1088/1367-2630/aa732f
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License
CC BY 3.0 Unported