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Femtosecond-pulse-train ionization of Rydberg wave packets

Simonsen, Sigrid Ina; Sørngård, Stian Astad; Førre, Morten; Hansen, Jan Petter
Peer reviewed, Journal article
Published version
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Femtosecond-pulse-train ionization of Rydberg wave packets.pdf (1.605Mb)
Permanent lenke
https://hdl.handle.net/1956/7449
Utgivelsesdato
2012-10-09
Metadata
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Samlinger
  • Department of Physics and Technology [1343]
Originalversjon
https://doi.org/10.1103/physreva.86.043423
Sammendrag
We calculate, based on first-order perturbation theory, the total and differential ionization probabilities from a dynamic periodic Rydberg wave packet of a given n-shell exposed to a train of femtosecond laser pulses. The total probability is shown to depend crucially on the laser repetition rate: For certain frequencies the ionization probability vanishes, while for others it becomes very large. The origin of this effect is the strong dependence of the ionization probability on the Stark quantum number. Correspondingly, the angular electronic distribution also changes significantly with the increasing number of pulses for certain repetition rates.
Utgiver
American Physical Society
Opphavsrett
Copyright 2012 American Physical Society.

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