Dynamic polarizability measurements in Lu
arXiv:1810.11168 · doi:10.1103/PhysRevA.99.012510
Abstract
We measure the differential polarizability of the Lu -to- clock transition at multiple wavelengths. This experimentally characterizes the differential dynamic polarizability for frequencies up to 372 THz and allows an experimental determination of the dynamic correction to the blackbody radiation shift for the clock transition. In addition, measurements at the near resonant wavelengths of 598 and 646 nm determine the two dominant contributions to the differential dynamic polarizability below 372 THz. These additional measurements are carried out by two independent methods to verify the validity of our methodology. We also carry out a theoretical calculation of the polarizabilities using the hybrid method that combines the configuration interaction (CI) and the coupled-cluster approaches, incorporating for the first time quadratic non-linear terms and partial triple excitations in the coupled-cluster calculations. The experimental measurements of the matrix elements provide high-precision benchmarks for this theoretical approach.
11 pages, 5 figures, and 13 page supplemental material
References in corpus (1)
Cited by in corpus (11)
- Suppressing inhomogeneous broadening in a lutetium multi-ion optical clock
- Measurements of the branching ratios for decays in Ba
- Polarizability assessments of ion-based optical clocks
- Branching fractions for decays in Ba
- Combining experiments and relativistic theory for establishing accurate radiative quantities in atoms: the lifetime of the P state in Ca
- Spectroscopy of the -to- clock transition in Lu
- A scheme for quantum-logic based transfer of accuracy in polarizability measurement for trapped ions using a moving optical lattice
- Measurement of the Ra state lifetime
- Absolute frequency measurement of a Lu optical frequency standard via link to international atomic time
- Measurement of the Differential Static Scalar Polarizability of the Sr Clock Transition
- Zero crossings of the differential scalar polarizability of Ba clock transition