Author:
Ivanov I. A.,Kheifets Anatoli S.,Kim Kyung Taec
Abstract
AbstractWe study propagation effects due to the finite speed of light in ionization of extended molecular systems. We present a general quantitative theory of these effects and show under which conditions such effects should appear. The finite speed of light propagation effects are encoded in the non-dipole terms of the time-dependent Shrödinger equation and display themselves in the photoelectron momentum distribution projected on the molecular axis. Our numerical modeling for the $$\hbox {H}_{2}^{+}$$
H
2
+
molecular ion and the $$\hbox {Ne}_2$$
Ne
2
dimer shows that the finite light propagation time from one atomic center to another can be accurately determined in a table top laser experiment which is much more readily accessible than the ground breaking synchrotron measurement by Grundmann et al. (Science 370:339, 2020).
Publisher
Springer Science and Business Media LLC
Cited by
4 articles.
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