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Coulomb energy contribution to the excitation energy in $^{229}$Th and enhanced effect of $α$ variation

arXiv:0807.3218 · doi:10.1209/0295-5075/85/50005

Abstract

We calculated the contribution of Coulomb energy to the spacing between the ground and first excited state of $^{229}$Th nucleus as a function of the deformation parameter $δ$. We show that despite the fact that the odd particle is a neutron, the change in Coulomb energy between these two states can reach several hundreds KeV.This means that the effect of the variation of the fine structure constant $α=e^2/\hbar c$ may be enhanced $ΔU_C/E \sim 10^4$ times in the $E=$7.6 eV "nuclear clock" transition between the ground and first excited states in the $^{229}$Th nucleus.

6 pages,2 figures