Higher-order recoil corrections for singlet states of the helium atom
Abstract: We investigate the finite nuclear mass corrections in the helium atom in order to resolve a significant disagreement between the $23S - 23P$ and $23S - 21S$ transition isotope shifts. These two transitions lead to discrepant results for the nuclear charge radii difference between $4$He and $3$He. The accurate treatment of the finite nuclear mass effects is quite complicated and requires the use of the quantum field theoretical approach. We derive $\alpha6 m2/M$ correction with the help of nonrelativistic QED and dimensional regularization of the three body Coulombic system, and present accurate numerical results for low lying states. The previously reported $4 \sigma$ discrepancy in the nuclear charge radius difference between $3$He and $4$He from two different atomic isotope shift transitions is confirmed, which calls for verification of experimental transition frequencies.
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