Quantum dynamics of a two-state system induced by a chirped zero-area pulse
Abstract
It is well known that area pulses make Rabi oscillation and chirped pulses in the adiabatic interaction regime induce complete population inversion of a two-state system. Here we show that chirped zero-area pulses could engineer an interplay between the adiabatic evolution and Rabi-like oscillations. In a proof-of-principle experiment utilizing spectral chirping of femtosecond laser pulses with a resonant spectral hole, we demonstrate that the chirped zero-area pulses could induce, for example, complete population inversion and return of the cold rubidium atom two-state system. Experimental result agrees well with the theoretically considered overall dynamics, which could be approximately modeled to a Ramsey-like three-pulse interaction, where the - and - rotations are respectively driven by the hole and the main pulse.
Keywords
Cite
@article{arxiv.1508.05584,
title = {Quantum dynamics of a two-state system induced by a chirped zero-area pulse},
author = {Han-gyeol Lee and Yunheung Song and Hyosub Kim and Hanlae Jo and Jaewook Ahn},
journal= {arXiv preprint arXiv:1508.05584},
year = {2016}
}
Comments
7 pages, 4 figures