Published December 1988 | Version v1
Journal article

Pulsed single-mode laser ionization of hyperfine levels of zirconium-91

  • 1. Laser Chemistry Group, Division of Chemistry, National Research Council of Canada, Ottawa, Ontario K1A 0R6, Canada

Description

We identify a considerable improvement in proposed schemes for isotopic depletion of zirconium-91 on the basis of the atomic vapor laser isotope separation (AVLIS) method. The improvement lies in applying a single-longitudinal-mode dye laser for selective excitation of all hyperfine split levels of the ground state of zirconium-91. High-resolution laser-induced fluorescence spectroscopy of atomic beams of zirconium produced through laser vaporization--supersonic expansion has been used to identify transitions of zirconium with suitable hyperfine structure. Casimir magnetic-dipole and electric-quadrupole coupling constants and isotope shifts have been derived and are reported for five excited configurations. Suitable intermediate levels in a multistep resonance ionization pathway have been identified by two-color resonance ionization spectroscopy. Isotope depletion has been demonstrated on one ground state transition (z 3F/sup circle-open/3 left-arrowa 3F2 at 593.7 nm) by using a specially constructed pulsed, single-longitudinal-mode dye-laser oscillator. Prospects and future directions in zirconium AVLIS are discussed

Additional details

Publishing Information

Journal Title
Journal of the Optical Society of America, Part B: Optical Physics
Journal Volume
5
Journal Issue
12
Series
J. Opt. Soc. Am., B: Opt. Phys.
Journal Page Range
2409-2416
ISSN
0740-3224
CODEN
JOBPD