Filming enhanced ionization in an ultrafast triatomic slingshot

Author:

Howard Andrew J.ORCID,Britton Mathew,Streeter Zachary L.,Cheng Chuan,Forbes RuaridhORCID,Reynolds Joshua L.ORCID,Allum FelixORCID,McCracken Gregory A.,Gabalski Ian,Lucchese Robert R.ORCID,McCurdy C. William,Weinacht Thomas,Bucksbaum Philip H.ORCID

Abstract

AbstractFilming atomic motion within molecules is an active pursuit of molecular physics and quantum chemistry. A promising method is laser-induced Coulomb Explosion Imaging (CEI) where a laser pulse rapidly ionizes many electrons from a molecule, causing the remaining ions to undergo Coulomb repulsion. The ion momenta are used to reconstruct the molecular geometry which is tracked over time (i.e., filmed) by ionizing at an adjustable delay with respect to the start of interatomic motion. Results are distorted, however, by ultrafast motion during the ionizing pulse. We studied this effect in water and filmed the rapid “slingshot” motion that enhances ionization and distorts CEI results. Our investigation uncovered both the geometry and mechanism of the enhancement which may inform CEI experiments in many other polyatomic molecules.

Funder

National Science Foundation

Stanford Graduate Fellowship - 2019 Albion Walter Hewlett Fellow

U.S. Department of Energy

NDSEG Fellowship

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Biochemistry,Environmental Chemistry,General Chemistry

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