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Sub-Cycle Strong-Field Interferometry

Chemical Physics 2017-08-23 v1 Optics Quantum Physics

Abstract

A nonlinear interferometry scheme is described theoretically to induce and resolve electron wave- function beating on time scales shorter than the optical cycle of the time-delayed pump and probe pulses. By employing two moderately intense few-cycle laser fields with a stable carrier-envelope phase, a large range of the entire electronic level structure of a quantum system can be retrieved. In contrast to single-photon excitation schemes, the retrieved electronic states include levels that are both dipole- and non-dipole-accessible from the ground electronic state. The results show that strong-field interferometry can reveal both high-resolution and broad-band spectral information at the same time with important consequences for quantum-beat spectroscopy on attosecond or even shorter time scales.

Keywords

Cite

@article{arxiv.1007.2258,
  title  = {Sub-Cycle Strong-Field Interferometry},
  author = {Christian Ott and Philipp Raith and Thomas Pfeifer},
  journal= {arXiv preprint arXiv:1007.2258},
  year   = {2017}
}

Comments

first submitted on April 19, 2010

R2 v1 2026-06-21T15:47:51.864Z