Observation of Quantum Interferences via Light Induced Conical Intersections in Diatomic Molecules
Abstract
We observe energy-dependent angle-resolved diffraction patterns in protons from strong-field dissociation of the molecular hydrogen ion H. The interference is a characteristic of dissociation around a laser-induced conical intersection (LICI), which is a point of contact between two surfaces in the dressed 2-dimensional Born-Oppenheimer potential energy landscape of a diatomic molecule in a strong laser field. The interference magnitude and angular period depend strongly on the energy difference between the initial state and the LICI, consistent with coherent diffraction around a cone-shaped potential barrier whose width and thickness depend on the relative energy of the initial state and the cone apex. These findings are supported by numerical solutions of the time-dependent Schr\"{o}dinger equation for similar experimental conditions.
Keywords
Cite
@article{arxiv.1511.05626,
title = {Observation of Quantum Interferences via Light Induced Conical Intersections in Diatomic Molecules},
author = {Adi Natan and Matthew R Ware and Vaibhav S. Prabhudesai and Uri Lev and Barry D. Bruner and Oded Heber and Philip H Bucksbaum},
journal= {arXiv preprint arXiv:1511.05626},
year = {2016}
}
Comments
4 pages, 4 figures