Mapping the Evolution of Optically-Generated Rotational Wavepackets in a Room Temperature Ensemble of D$_2$
Quantum Physics
2007-11-06 v1 Atomic Physics
Chemical Physics
Abstract
A coherent superposition of rotational states in D has been excited by nonresonant ultrafast (12 femtosecond) intense (2 10 Wcm) 800 nm laser pulses leading to impulsive dynamic alignment. Field-free evolution of this rotational wavepacket has been mapped to high temporal resolution by a time-delayed pulse, initiating rapid double ionization, which is highly sensitive to the angle of orientation of the molecular axis with respect to the polarization direction, . The detailed fractional revivals of the neutral D wavepacket as a function of and evolution time have been observed and modelled theoretically.
Keywords
Cite
@article{arxiv.0706.4077,
title = {Mapping the Evolution of Optically-Generated Rotational Wavepackets in a Room Temperature Ensemble of D$_2$},
author = {W. A. Bryan and E. M. L. English and J. McKenna and J. Wood and C. R. Calvert and R. Torres and I. C. E. Turcu and J. L. Collier and I. D. Williams and W. R. Newell},
journal= {arXiv preprint arXiv:0706.4077},
year = {2007}
}
Comments
4 pages, 3 figures. Accepted for publication in Phys. Rev. A. Full reference to follow..