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Measurement of the radial matrix elements of the $6s \: ^2S_{1/2} \rightarrow 7p \: ^2P_{J} $ transitions in atomic cesium

Published 29 Oct 2013 in physics.atom-ph | (1310.7958v1)

Abstract: We report measurements of the absorption strength of the cesium $6s : 2S_{1/2} \rightarrow 7p : 2P_{3/2} $ and the $6s : 2S_{1/2} \rightarrow 7p : 2P_{1/2} $ transitions at $\lambda = 456$ nm and 459 nm, respectively, in an atomic vapor cell. By simultaneously measuring the absorption strength on the Cs D$1$ line ($6s : 2S{1/2} \rightarrow 6p : 2P_{1/2} $), for which the electric dipole transition moment is precisely known, we are able to determine the reduced dipole matrix elements for these two lines. We report $\langle 7P_{3/2} || r || 6S_{1/2} \rangle = 0.5780 : (7) : a_0$ and $\langle 7P_{1/2} || r || 6S_{1/2} \rangle = 0.2789 : (16) : a_0$, with fractional uncertainties of 0.12% and 0.6%, respectively. Through these measurements, we can reduce the discrepancy between values of the tensor polarizability for the Cs $6s : 2S_{1/2} \rightarrow 7s : 2S_{1/2} $ transition that have been determined through two different methods.

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