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Quantum Control by Ultrafast Polarization Shaping



Details zur Publikation
Autor(inn)en:
Brixner, T.; Krampert, G.; Pfeifer, T.; Selle, R.; Gerber, G.; Wollenhaupt, M.; Graefe, O.; Horn, C.; Liese, D.; Baumert, T.

Publikationsjahr:
2004
Zeitschrift:
Physical Review Letters
Seitenbereich:
208301-1 - 208301-4
Abkürzung der Fachzeitschrift:
PRL
Jahrgang/Band :
92
ISSN:
0031-9007
eISSN:
1079-7114


Zusammenfassung, Abstract
We demonstrate that the use of time-dependent light polarization opens a new level of control over quantum systems. With potassium dimer molecules from a supersonic molecular beam, we show that a polarization-shaped laser pulse increases the ionization yield beyond that obtained with an optimally shaped linearly polarized laser pulse. This is due to the different multiphoton ionization pathways in K-2 involving dipole transitions which favor different polarization directions of the exciting laser field. This experiment is a qualitative extension of quantum control mechanisms which opens up new directions giving access to the three-dimensional temporal response of molecular systems.


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Zuletzt aktualisiert 2022-20-04 um 14:30