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MO: Fachverband Molekülphysik

MO 56: Poster: Femtosecond Spectroscopy

MO 56.1: Poster

Thursday, March 22, 2007, 16:30–18:30, Poster A

High Harmonic Imaging of Conical Intersections — •Markus Gühr1,2, Brian McFarland1,2, Joseph Farrell1,2, and Philip Bucksbaum1,21Stanford PULSE Center, SLAC, Menlo Park CA 94025, USA — 2Physics Department, Stanford University, Stanford CA 94305,USA

Conical intersections (CI) are crucially involved in light harvesting, primary visual processes, DNA UV stabilization and atmospheric chemistry. A wave packet typically moves through the intersection on a femtosecond time scale, demonstrating the need for ultrafast tools that are sensitive to the electronic state change occurring in passing the CI. We theoretically propose a novel femtosecond pump-probe scheme for CIs based on high harmonic generation (HHG). A first pulse (pump) creates a molecular wave packet on excited electronic surfaces, and the time delayed, high intensity probe pulse produces HHG on the excited molecule as it moves through the CI region. We use the symmetry of the electronic wave functions [1] to detect the electronic state change in the CI via HHG. Furthermore, we can use two center interference effects in the HHG [2,3] to determine the nuclear dynamics that is accompanied by the CI passage. To demonstrate our scheme, we perform simple model calculations on the triatomic molecule SO2, which will be ideally suited for future experiments because of its high UV excitation cross sections for pumping the wave packet to the CI region.

[1] J. Itatani et al, Phys. Rev. Lett., 94, 123902 (2005)

[2] M. Lein et al, Phys. Rev. A, 66, 023805 (2002)

[3] T. Kanai et al, Nature, 435, 470 (2005)

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