High Frequency Vibrational Modulations in Two-Dimensional Electronic Spectra and Their Resemblance to Electronic Coherence Signatures

Author(s)
Niklas Christensson, Franz Milota, Jürgen Hauer, Jaroslaw Sperling, Oliver Bixner, Alexandra Nemeth, Harald F Kauffmann
Abstract

In this work we analyze how nuclear coherences modulate diagonal and off-diagonal peaks in two-dimensional electronic spectroscopy. 2D electronic spectra of pinacyanol chloride are measured with 8 fs pulses, which allows coherent excitation of the 1300 cm(-1) vibrational mode. The 2D spectrum reveals both diagonal and off-diagonal peaks related to the vibrational mode. On early time scales, up to 30 fs, coherent dynamics give rise to oscillations in the amplitudes, positions, and shapes of the peaks in the 2D spectrum. We find an anticorrelation between the amplitude and the diagonal width of the two diagonal peaks. The measured data are reproduced with a model incorporating a high frequency mode coupled to an electronic two-level-system. Our results show that these anti-correlated oscillations occur for vibrational wavepackets and not exclusively for electronic coherences as has been assumed previously.

Organisation(s)
Electronic Properties of Materials
External organisation(s)
Ludwig-Maximilians-Universität München, Technische Universität Wien
Journal
The Journal of Physical Chemistry Part B: Condensed Matter, Materials, Surfaces, Interfaces & Biophysical
Volume
115
Pages
5383-5391
No. of pages
9
ISSN
1520-6106
DOI
https://doi.org/10.1021/jp109442b
Publication date
2011
Peer reviewed
Yes
Austrian Fields of Science 2012
104017 Physical chemistry, 103018 Materials physics
Portal url
https://ucrisportal.univie.ac.at/en/publications/high-frequency-vibrational-modulations-in-twodimensional-electronic-spectra-and-their-resemblance-to-electronic-coherence-signatures(cfeecf5b-e7f9-42b6-8c6d-3f88a5dc7f00).html