Publication | Open Access
Collinear Resonance Ionization Spectroscopy of Neutron-Deficient Francium Isotopes
71
Citations
24
References
2013
Year
Experimental Nuclear PhysicsNuclear PhysicsPhysicsSpherical Droplet ModelNeutron-deficient Francium IsotopesNuclear DataNatural SciencesEngineeringMagnetic ResonanceNuclear TheoryAtomic PhysicsNuclear Quadrupole ResonanceNeutron SourceChemistryNeutron ScatteringNuclear DecayBeam ParticlesNuclear Astrophysics
The magnetic moments and isotope shifts of the neutron-deficient francium isotopes (202-205)Fr were measured at ISOLDE-CERN with use of collinear resonance ionization spectroscopy. A production-to-detection efficiency of 1% was measured for (202)Fr. The background from nonresonant and collisional ionization was maintained below one ion in 10(5) beam particles. Through a comparison of the measured charge radii with predictions from the spherical droplet model, it is concluded that the ground-state wave function remains spherical down to (205)Fr, with a departure observed in (203)Fr (N=116).
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