arXiv:1806.03525·v1·Atomic Physics
Nuclear charge radii of Th from isotope and isomer shifts
M. S. Safronova · S. G. Porsev · M. G. Kozlov · J. Thielking · M. V. Okhapkin · P. Głowacki · D. M. Meier · E. Peik
Abstract
The isotope Th is unique in that it possesses an isomeric state of only a few eV above the ground state, suitable for nuclear laser excitation. An optical clock based on this transition is expected to be a very sensitive probe for variations of fundamental constants, but the nuclear properties of both states have to be determined precisely to derive the actual sensitivity. We carry out isotope shift calculations in Th and Th including the specific mass shift, using a combination of configuration interaction and all-order linearized coupled-cluster methods and estimate the uncertainty of this approach. We perform experimental measurements of the hyperfine structure of Th and isotopic shift between Th and Th to extract the difference in root-mean-square radii as fm. Using the recently measured values of the isomer shift of lines of Th, we derive the value for the mean-square radius change between Th and its low lying isomer Th to be .
Comments: 5 pages, 2 figures