Measurement of the reduced dipole matrix element in Ba+
N. Jayjong, M. D. K. Lee, K. J. Arnold, M. D. Barrett
Abstract
We present a high-precision measurement of the reduced electric-dipole matrix element P1/2\|r\|S1/2 in 138Ba+. By comparing off-resonant scattering rates with dispersive Stark-shift measurements, we determine the matrix element to be 3.322\,7(12), corresponding to a P1/2 excited-state radiative lifetime of 7.866\,3(56)~ns. Combining our experimental results with a prior model for the differential scalar polarizability Δα0(ω), we extract the static value Δα0(0) = -73.09(12)a.u. This determination directly improves the evaluation of the blackbody radiation (BBR) shift, minimizing a prominent systematic limitation in room-temperature Ba+ optical clock error budgets. These results provide a stringent benchmark for atomic-structure calculations and advance high-precision applications in quantum metrology and tests of fundamental physics.
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