arXiv · 2110.01291
Nondipole effects on the double-slit interference in molecular ionization by xuv pulses
Abstract
The double-slit interference in single-photon ionization of the diatomic molecular ion $\mathrm{H}_2^+$ is theoretically studied beyond the dipole approximation. Via simulating and comparing the interactions of the prealigned $\mathrm{H}_2^+$ and the hydrogen atom with the xuv pulses propagating in different directions, we illustrate two kinds of effects that are encoded in the interference patterns of the photoelectrons from $\mathrm{H}_2^+$: (i) the photon-momentum transfer and (ii) the finite speed of light. While both effects could modify the maxima of the interference fringes, we show that the former one hardly affects the interference minima. Our results and analysis show that the interference minima rule out the influences of the photon-momentum transfer and, potentially, the multielectron effect, thus performing a better role in decoding the zeptosecond time delay for the pulse hitting one and the other atomic centers of the molecule.
Explore related subjects
Keep this discovery
Kunlong Liu, Yibo Hu, Qingbin Zhang, Peixiang Lu. 2021-10-04. Nondipole effects on the double-slit interference in molecular ionization by xuv pulses. https://doi.org/10.1364/oe.445205
Cite the original work for its findings. Save a collection to share your selection of sources.