Precision measurements of relativistic and QED effects in helium-like boron

Abstract
We have made precision wavelength measurements on the 1s2s 3 S1–1s2p 3 P0,1,2° transitions in heliumlike boron using fast-beam laser excitation. These measurements are accurate to 2 parts in 107 of the transition energy and test the most recent calculations at a level of 0.1% of the Lamb shift. The relatively high Z of boron, in comparison to helium, makes the transition energies sensitive to higher powers of αZ in the calculations, and our measurements show discrepancies which may be due to these uncalculated higher-order terms.