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High-Resolution Laser Spectroscopy of Long-Lived Plutonium Isotopes

Nuclear Experiment 2017-03-29 v1 Atomic Physics

Abstract

Long-lived isotopes of plutonium were studied using two complementary techniques, high-resolution resonance ionisation spectroscopy (HR-RIS) and collinear laser spectroscopy (CLS). Isotope shifts have been measured on the 5f67s2 7F05f56d27s (J=1)5f^67s^2\ ^7F_0 \rightarrow 5f^56d^27s\ (J=1) and 5f67s2 7F15f67s7p (J=2)5f^67s^2\ ^7F_1 \rightarrow 5f^67s7p\ (J=2) atomic transitions using the HR-RIS method and the hyperfine factors have been extracted for the odd mass nuclei 239,241^{239,241}Pu. Collinear laser spectroscopy was performed on the 5f67s 8F1/2J=1/2  (27523.61cm1)5f^67s\ ^8F_{1/2} \rightarrow J=1/2\; (27523.61\text{cm}^{-1}) ionic transition with the hyperfine AA factors measured for 239^{239}Pu. Changes in mean-squared charge radii have been extracted and show a good agreement with previous non-optical methods, with an uncertainty improvement by approximately one order of magnitude. Plutonium represents the heaviest element studied to date using collinear laser spectroscopy.

Keywords

Cite

@article{arxiv.1703.01845,
  title  = {High-Resolution Laser Spectroscopy of Long-Lived Plutonium Isotopes},
  author = {A. Voss and V. Sonnenschein and P. Campbell and B. Cheal and T. Kron and I. D. Moore and I. Pohjalainen and S. Raeder and N. Trautmann and K. Wendt},
  journal= {arXiv preprint arXiv:1703.01845},
  year   = {2017}
}

Comments

accepted by Phys. Rev. A (2017-03-02)