Coherent control of bond making: the performance of rationally phase-shaped femtosecond laser pulses

Liat Levin, Wojciech Skomorowski, Ronnie Kosloff, Christiane P. Koch, Zohar Amitay

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

The first step in the coherent control of a photoinduced binary reaction is bond making or photoassociation. We have recently demonstrated coherent control of bond making in multi-photon femtosecond photoassociation of hot magnesium atoms, using linearly chirped pulses (Levin et al 2015 Phys. Rev. Lett. 114 233003). The detected yield of photoassociated magnesium dimers was enhanced by positively chirped pulses which is explained theoretically by a combination of purification and chirp-dependent Raman transitions. The yield could be further enhanced by pulse optimization resulting in pulses with an effective linear chirp and a sub-pulse structure, where the latter allows for exploiting vibrational coherences. Here, we systematically explore the efficiency of phase-shaped pulses for the coherent control of bond making, employing a parametrization of the spectral phases in the form of cosine functions. We find up to an order of magnitude enhancement of the yield compared to the unshaped transform-limited pulse. The highly performing pulses all display an overall temporally increasing instantaneous frequency and are composed of several overlapping sub-pulses. The time delay between the first two sub-pulses fits very well the vibrational frequency of the generated intermediate wavepacket. These findings are in agreement with chirp-dependent Raman transitions and exploitation of vibrational dynamics as underlying control mechanisms.

Original languageEnglish
Article number184004
JournalJournal of Physics B: Atomic, Molecular and Optical Physics
Volume48
Issue number18
DOIs
StatePublished - 29 Jul 2015

Bibliographical note

Publisher Copyright:
© 2015 IOP Publishing Ltd.

Keywords

  • Coherent control of binary reactions
  • Femtosecond laser pulses
  • Photoassociation

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