XUV excitation followed by ultrafast non-adiabatic relaxation in PAH molecules as a femto-astrochemistry experiment

Marciniak, A. ; Despré, V. ; Barillot, T. ; Rouzée, A. ; Galbraith, M.C.E. ; Klei, J. ; Yang, C.-H. ; Smeenk, C.T.L. ; Loriot, V. ; Reddy, S. Nagaprasad ; Tielens, A.G.G.M. ; Mahapatra, S. ; Kuleff, A. I. ; Vrakking, M.J.J. ; Lépine, F. (2015) XUV excitation followed by ultrafast non-adiabatic relaxation in PAH molecules as a femto-astrochemistry experiment Nature Communications, 6 . No pp. given. ISSN 2041-1723

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Official URL: http://www.nature.com/articles/ncomms8909

Related URL: http://dx.doi.org/10.1038/ncomms8909

Abstract

Highly excited molecular species are at play in the chemistry of interstellar media and are involved in the creation of radiation damage in a biological tissue. Recently developed ultrashort extreme ultraviolet light sources offer the high excitation energies and ultrafast time-resolution required for probing the dynamics of highly excited molecular states on femtosecond (fs) (1 fs=10−15s) and even attosecond (as) (1 as=10−18 s) timescales. Here we show that polycyclic aromatic hydrocarbons (PAHs) undergo ultrafast relaxation on a few tens of femtoseconds timescales, involving an interplay between the electronic and vibrational degrees of freedom. Our work reveals a general property of excited radical PAHs that can help to elucidate the assignment of diffuse interstellar absorption bands in astrochemistry, and provides a benchmark for the manner in which coupled electronic and nuclear dynamics determines reaction pathways in large molecules following extreme ultraviolet excitation.

Item Type:Article
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ID Code:103017
Deposited On:01 Feb 2018 12:19
Last Modified:01 Feb 2018 12:19

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