English

Vibrational wave packet induced oscillations in two-dimensional electronic spectra. I. Experiments

Chemical Physics 2010-05-18 v1

Abstract

This is the first in a series of two papers investigating the effect of electron-phonon coupling in two-dimensional Fourier transformed electronic spectroscopy. We present a series of one- and two-dimensional nonlinear spectroscopic techniques for studying a dye molecule in solution. Ultrafast laser pulse excitation of an electronic transition coupled to vibrational modes induces a propagating vibrational wave packet that manifests itself in oscillating signal intensities and line-shapes. For the two-dimensional electronic spectra we can attribute the observed modulations to periodic enhancement and decrement of the relative amplitudes of rephasing and non-rephasing contributions to the total response. Different metrics of the two-dimensional signals are shown to relate to the frequency-frequency correlation function which provides the connection between experimentally accessible observations and the underlying microscopic molecular dynamics. A detailed theory of the time-dependent two-dimensional spectral line-shapes is presented in the accompanying paper [T. Mancal et al., arXiv:1003.xxxx].

Keywords

Cite

@article{arxiv.1003.4174,
  title  = {Vibrational wave packet induced oscillations in two-dimensional electronic spectra. I. Experiments},
  author = {Alexandra Nemeth and Franz Milota and Tomas Mancal and Vladimir Lukes and Juergen Hauer and Harald F. Kauffmann and Jaroslaw Sperling},
  journal= {arXiv preprint arXiv:1003.4174},
  year   = {2010}
}

Comments

13 pages, 8 figures

R2 v1 2026-06-21T15:00:46.137Z