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arXiv 2015-09-23 DOI 10.1103/PhysRevA.92.052513 0 views

Measurements of the Ground-State Polarizabilities of Cs, Rb, and K using Atom Interferometry

Gregoire, Maxwell D. · Hromada, Ivan · Holmgren, William F. · Trubko, Raisa · Cronin, Alexander D.

Original · EN

We measured the ground-state static electric-dipole polarizabilities of Cs, Rb, and K atoms using a three-nanograting Mach-Zehnder atom beam interferometer. Our measurements provide benchmark tests for atomic structure calculations and thus test the underlying theory used to interpret atomic parity non-conservation experiments. We measured αCs = 4πε₀ × 59.45(11) ų, αRb = 4πε₀ × 47.44(9) ų, and αₖ = 4πε₀ × 42.97(8) ų. In atomic units, these measurements are αCs = 401.2(7), αRb = 320.1(6), and αₖ = 290.0(5). We report ratios of polarizabilities αCs/αRb = 1.2532(10), αCs/αₖ = 1.3835(9), and αRb/αₖ = 1.1040(9) with smaller fractional uncertainty because the systematic errors for individual measurements are largely correlated. Since Cs atom beams have short de Broglie wavelengths, we developed measurement methods that do not require resolved atom diffraction. Specifically, we used phase choppers to measure atomic beam velocity distributions, and we used electric field gradients to give the atom interference pattern a phase shift that depends on atomic polarizability.

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