Finite field calculations of static polarizabilities and hyperpolarizabilities of In and Sr
arXiv:1501.04439 · doi:10.1103/PhysRevA.92.052515
Abstract
The finite field calculations are performed for two heavy frequency-standard candidates In and Sr. The progressive hierarchy of electron correlations is implemented by the relativistic coupled-cluster and configuration interaction methods combined with basis set of increasing size. The dipole polarizabilities, dipole hyperpolarizabilities, quadrupole moments, and quadrupole polarizabilities are recommended for the ground state 5s and low-lying states 5s5p of In and Sr. Comparative study of the fully and scalar relativistic electron correlation calculations reveals the effect of the spin-orbit interaction on the dipole polarizabilities of In and Sr. Finally, the blackbody-radiation shifts due to the dipole polarizability, dipole hyperpolarizability, and quadrupole polarizability are evaluated for the clock transition 5s - 5s5p of In and Sr.
18 pages, 7 tables
References in corpus (8)
- An atomic clock with instability
- Systematic evaluation of an atomic clock at 2e-18 total uncertainty
- Multipolar theory of black-body radiation shift of atomic energy levels and its implications for optical lattice clocks
- Tune-out wavelengths for the alkaline earth atoms
- Properties of the triplet metastable states of the alkaline-earth atoms
- Optical Lattice Polarization Effects on Hyperpolarizability of Atomic Clock Transitions
- Finite-field calculation of the polarizabilities and hyperpolarizabilities of Al
- Relativistic calculations of and coefficients for strontium dimers
Cited by in corpus (8)
- Multipolar polarizabilities and hyperpolarizabilities in the Sr optical lattice clock
- Lifetimes of ultralong-range strontium Rydberg molecules in a dense BEC
- Calculation of higher-order corrections to the light shift of the -- clock transition in Cd
- Electric dipole polarizability of group-IIIA ions using PRCC: Large correlation effects from nonlinear terms
- Magic wavelengths for the transition in ytterbium atom
- Relativistic and Electron Correlation Effects in Static Dipole Polarizabilities for Main-Group Elements
- Relativistic and electron-correlation effects in static dipole polarizabilities for group 12 elements
- Relativistic and electron-correlation effects in static dipole polarizabilities for group 11 elements