Elucidating isotopic effects in intense ultrafast laser-driven D 2H+ fragmentation

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Abstract

The triatomic hydrogen molecular ion is instrumental as a benchmark towards understanding the strong-field dynamics of polyatomic molecules. Using a crossed-beams coincidence three-dimensional momentum imaging method, we demonstrate clear isotopic effects in the fragmentation of D2H + induced by 7 fs (40 fs), 790 nm laser pulses at an intensity of 1016 W cm-2 (5 × 1015 W cm-2). Our experiment uniquely separates all fragmentation channels and provides kinematically complete information for the nuclear fragments. For example, we show that for dissociative ionization of D2H+ there is a large difference in branching ratios of the two-body channels, namely, H ++D dominates D++HD+, whereas there is minimal difference in branching ratios between the dissociation channels H ++D2 and D++HD. © 2014 IOP Publishing Ltd.

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Sayler, A. M., McKenna, J., Gaire, B., Kling, N. G., Carnes, K. D., Esry, B. D., & Ben-Itzhak, I. (2014). Elucidating isotopic effects in intense ultrafast laser-driven D 2H+ fragmentation. Journal of Physics B: Atomic, Molecular and Optical Physics, 47(3). https://doi.org/10.1088/0953-4075/47/3/031001

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