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arXiv 2016-01-22 DOI 10.1103/PhysRevLett.116.043001 0 views

Electron localization in dissociating H₂+ by retroaction of a photoelectron onto its source

Waitz, M. · Aslitürk, D. · Wechselberger, N. · Gill, H. K. · Rist, J. · Wiegandt, F. · Goihl, C. · Kastirke, G. · Weller, M. · Bauer, T. · Metz, D. · Sturm, F. P. · Voigtsberger, J. · Zeller, S. · Trinter, F. · Schiwietz, G. · Weber, T. · Williams, J. B. · Schöffler, M. S. · Schmidt, L. Ph. H. · Jahnke, T. · Dörner, R.

Original · EN

We investigate the dissociation of H₂+ into a proton and a H⁰ after single ionization with photons of an energy close to the threshold. We find that the p+ and the H⁰ do not emerge symmetrically in case of the H₂+ dissociating along the 1sσg ground state. Instead, a preference for the ejection of the p+ in the direction of the escaping photoelectron can be observed. This symmetry breaking is strongest for very small electron energies. Our experiment is consistent with a recent prediction by Serov and Kheifets [Phys. Rev. A 89, 031402 (2014)]. In their model, which treats the photoelectron classically, the symmetry breaking is induced by the retroaction of the long range Coulomb potential onto the dissociating H₂+.

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