REMPI Spectroscopy of HfF
Abstract
The spectrum of electronic states at 30000--33000 cm in hafnium fluoride has been studied using (1+1) resonance-enhanced multi-photon ionization (REMPI) and (1+1) REMPI. Six and ten vibronic bands have been characterized. We report the molecular constants for these bands and estimate the electronic energies of the excited states using a correction derived from the observed isotope shifts. When either of two closely spaced electronic states is used as an intermediate state to access autoionizing Rydberg levels, qualitatively distinct autoionization spectra are observed. The intermediate state-specificity of the autoionization spectra bodes well for the possibility of using a selected state as an intermediate state to create ionic HfF in various selected quantum states, an important requirement for our electron electric dipole moment (eEDM) search in HfF.
Cite
@article{arxiv.1206.4808,
title = {REMPI Spectroscopy of HfF},
author = {Huanqian Loh and Russell P. Stutz and Tyler S. Yahn and Herbert Looser and Robert W. Field and Eric A. Cornell},
journal= {arXiv preprint arXiv:1206.4808},
year = {2015}
}
Comments
11 pages, 8 figures, 1 table