Elucidating Au–C bonding via laser spectroscopy of gold monocarbide
Abstract
Gold monocarbide (AuC) has been produced and characterized using laser spectroscopy, representing the first reported observation of AuC. We recorded the optical spectrum of gas-phase AuC between 400 and 700 nm, assigning excitations from the X2Π1/2((2σ)2(2π)1) ground state to states arising from the (2σ)2(3σ*)1 and (2σ)1(2π)2 configurations. Dispersed-fluorescence spectra are used to study the vibrational and spin–orbit structure of the ground state, branching ratios and radiative lifetimes of the excited states, and the Au–C bond dissociation energy. A molecular orbital diagram is used to rationalize the nature of AuC’s low-lying electronic states. The data serve as valuable benchmarks of relativistic theory and are relevant to quantum science and precision measurements with cold molecules.
Article Details
Journal Info
The Journal of Chemical Physics
American Institute of Physics
Authors (7)
Rory M. Weldon
Department of Chemistry, Williams College , Williamstown, Massachusetts 01267,
Danielle M. Darling
Department of Chemistry, Williams College , Williamstown, Massachusetts 01267,
Nicole M. Albright
Department of Chemistry, Williams College , Williamstown, Massachusetts 01267,
Kendall L. Rice
Department of Chemistry, Williams College , Williamstown, Massachusetts 01267,
Phaedra L. Salerno
Department of Chemistry, Williams College , Williamstown, Massachusetts 01267,
K. Cooper Stuntz
Department of Chemistry, Williams College , Williamstown, Massachusetts 01267,
Benjamin L. Augenbraun
Department of Chemistry, Williams College , Williamstown, Massachusetts 01267,