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- W2017291310 abstract "An atomic polarizing white-color interferometer composed of the wave packets in the $m=+1$ and $m=ensuremath{-}1$ states of the excited ${}^{3}{P}_{1}$ state of Ca, has been developed using a thermal atomic beam excited by a pair of two resonant lights at two separate zones under a homogeneous magnetic field. The interferometer generated the Ramsey fringes as a detuning of the rf frequency between two resonant lights from the Zeeman-frequency shift, while it generates white-color interference fringes as a detuning of laser frequency. The interferometer was used for the direct and short-time measurement of the Aharonov-Casher phase by removing the main part of dc Stark phase shift and without the influence of the frequency fluctuation of a laser. The measured dependence of the Aharonov-Casher phase on the electric field agreed with the predicted one within a relative uncertainty of 2.9%. The tensor polarizability in the ${}^{3}{P}_{1}$ state was determined to be ${ensuremath{alpha}}_{2}=2.623ifmmodepmelsetextpmfi{}0.015 mathrm{k}mathrm{H}mathrm{z}/(mathrm{k}mathrm{V}/mathrm{c}mathrm{m}{)}^{2}$ from the frequency shift between the $m=+1$ and $m=ensuremath{-}1$ states." @default.
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- W2017291310 date "2002-03-14" @default.
- W2017291310 modified "2023-10-06" @default.
- W2017291310 title "Direct measurement of the Aharonov-Casher phase and tensor Stark polarizability using a calcium atomic polarization interferometer" @default.
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- W2017291310 doi "https://doi.org/10.1103/physreva.65.042104" @default.
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