Measurement of the tune-out wavelength for Cs at nm
arXiv:2110.00043 · doi:10.1103/PhysRevA.104.052813
Abstract
We perform a measurement of the tune-out wavelength, , between the , , and , , transitions for Cs in the ground hyperfine state . At , the frequency-dependent scalar polarizability is zero leading to a zero scalar ac Stark shift. We measure the polarizability as a function of wavelength using Kapitza-Dirac scattering of a Cs Bose-Einstein condensate in a one-dimensional optical lattice, and determine the tune-out wavelength to be nm. From this measurement we determine the ratio of reduced matrix elements to be . This represents an improvement of a factor of 10 over previous results derived from excited-state lifetime measurements. We use the present measurement as a benchmark test of high-precision theory.
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- Determination of Quantum Defects and Core Polarizability of Atomic Cesium via Terahertz and Radio-Frequency Spectroscopy in Thermal Vapor
- Measurement of the 87Rb D-line vector tune-out wavelength
- An experimental platform for studying the heteronuclear Efimov effect with an ultracold mixture of Li and Cs atoms
- Determining the P excited-state tune-out wavelength of Yb in a triple-magic lattice
- Multi-state detection and spatial addressing in a microscope for ultracold molecules
- Dissipationless tune-out trapping for a lanthanide-alkali quantum gas mixture
- Two-Body Kapitza-Dirac Scattering of One-Dimensional Ultracold Atoms
- Tune-out wavelength for the thulium atom near 576 nm