English

Polarization and relaxation of radon

Nuclear Experiment 2008-11-26 v1

Abstract

Investigations of the polarization and relaxation of 209^{209}Rn by spin exchange with laser optically pumped rubidium are reported. On the order of one million atoms per shot were collected in coated and uncoated glass cells. Gamma-ray anisotropies were measured as a signal of the alignment (second order moment of the polarization) resulting from the combination of polarization and quadrupole relaxation at the cell walls. The temperature dependence over the range 130^\circC to 220^\circC shows the anisotropies increasing with increasing temperature as the ratio of the spin exchange polarization rate to the wall relaxation rate increases faster than the rubidium polarization decreases. Polarization relaxation rates for coated and uncoated cells are presented. In addition, improved limits on the multipole mixing ratios of some of the main gamma-ray transitions have been extracted. These results are promising for electric dipole moment measurements of octupole-deformed 223^{223}Rn and other isotopes, provided sufficient quantities of the rare isotopes can be produced.

Keywords

Cite

@article{arxiv.nucl-ex/0612006,
  title  = {Polarization and relaxation of radon},
  author = {E. R. Tardiff and J. A. Behr and T. E. Chupp and K. Gulyuz and R. S. Lefferts and W. Lorenzon and S. R. Nuss-Warren and M. R. Pearson and N. Pietralla and G. Rainovski and J. F. Sell and G. D. Sprouse},
  journal= {arXiv preprint arXiv:nucl-ex/0612006},
  year   = {2008}
}

Comments

4 pages, 4 figures