| Literature DB >> 27702903 |
Jian Lu1, Yaqing Zhang1, Harold Y Hwang1, Benjamin K Ofori-Okai1, Sharly Fleischer2, Keith A Nelson3.
Abstract
Ultrafast 2D spectroscopy uses correlated multiple light-matter interactions for retrieving dynamic features that may otherwise be hidden under the linear spectrum; its extension to the terahertz regime of the electromagnetic spectrum, where a rich variety of material degrees of freedom reside, remains an experimental challenge. We report a demonstration of ultrafast 2D terahertz spectroscopy of gas-phase molecular rotors at room temperature. Using time-delayed terahertz pulse pairs, we observe photon echoes and other nonlinear signals resulting from molecular dipole orientation induced by multiple terahertz field-dipole interactions. The nonlinear time domain orientation signals are mapped into the frequency domain in 2D rotational spectra that reveal J-state-resolved nonlinear rotational dynamics. The approach enables direct observation of correlated rotational transitions and may reveal rotational coupling and relaxation pathways in the ground electronic and vibrational state.Keywords: multidimensional coherent spectroscopy; rotational dynamics; terahertz; ultrafast spectroscopy
Year: 2016 PMID: 27702903 PMCID: PMC5081644 DOI: 10.1073/pnas.1609558113
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205