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Isotope shift of ^(40,42,44,48)Ca in the 4s\,² rm{S}_{frac{1}{2}} rightarrow 4p\,²rm{P}_{frac{3}{2}} transition

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arxiv 1507.07390 v2 pith:CQE43UAZ submitted 2015-07-27 physics.atom-ph

Isotope shift of ^(40,42,44,48)Ca in the 4s\,² rm{S}_{frac{1}{2}} rightarrow 4p\,²rm{P}_{frac{3}{2}} transition

classification physics.atom-ph
keywords fractransitionisotoperightarrowshiftfactorimprovedaccuracy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report on improved isotope shift measurements of the isotopes $^{40,42,44,48}$Ca in the $4s\,^2 \rm{S}_{\frac{1}{2}} \rightarrow 4p\,^2\rm{P}_{\frac{3}{2}}$ (D2) transition using collinear laser spectroscopy. Accurately known isotope shifts in the $4s\,^2 \rm{S}_{\frac{1}{2}} \rightarrow 4p\,^2\rm{P}_{\frac{1}{2}}$ (D1) transition were used to calibrate the ion beam energy with an uncertainty of $\Delta U \approx \pm 0.25$ V. The accuracy in the D2 transition was improved by a factor of $5 - 10$. A King-plot analysis of the two transitions revealed that the field shift factor in the D2 line is about 1.8(13) % larger than in the D1 transition which is ascribed to relativistic contributions of the $4p_{1/2}$ wave function.

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