Imaging the Renner–Teller effect using laser-induced electron diffraction

Author:

Amini Kasra,Sclafani Michele,Steinle Tobias,Le Anh-Thu,Sanchez Aurelien,Müller Carolin,Steinmetzer Johannes,Yue Lun,Martínez Saavedra José Ramón,Hemmer Michaël,Lewenstein Maciej,Moshammer Robert,Pfeifer Thomas,Pullen Michael G.,Ullrich Joachim,Wolter Benjamin,Moszynski Robert,García de Abajo F. Javier,Lin C. D.,Gräfe StefanieORCID,Biegert JensORCID

Abstract

Structural information on electronically excited neutral molecules can be indirectly retrieved, largely through pump–probe and rotational spectroscopy measurements with the aid of calculations. Here, we demonstrate the direct structural retrieval of neutral carbonyl disulfide (CS2) in theB1B2excited electronic state using laser-induced electron diffraction (LIED). We unambiguously identify the ultrafast symmetric stretching and bending of the field-dressed neutral CS2molecule with combined picometer and attosecond resolution using intrapulse pump–probe excitation and measurement. We invoke the Renner–Teller effect to populate theB1B2excited state in neutral CS2, leading to bending and stretching of the molecule. Our results demonstrate the sensitivity of LIED in retrieving the geometric structure of CS2, which is known to appear as a two-center scatterer.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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