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First Measurement of the Atomic Electric Dipole Moment of $^{225}$Ra
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abstract
The radioactive radium-225 ($^{225}$Ra) atom is a favorable case to search for a permanent electric dipole moment (EDM). Due to its strong nuclear octupole deformation and large atomic mass, $^{225}$Ra is particularly sensitive to interactions in the nuclear medium that violate both time-reversal symmetry and parity. We have developed a cold-atom technique to study the spin precession of $^{225}$Ra atoms held in an optical dipole trap, and demonstrated the principle of this method by completing the first measurement of its atomic EDM, reaching an upper limit of $|$$d$($^{225}$Ra)$|$ $<$ $5.0\!\times\!10^{-22}$ $e \cdot$cm (95$\%$ confidence).
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Cited by 1 Pith paper
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Effects of beyond-mean-field correlations on nuclear Schiff moments
Beyond-mean-field shape mixing suppresses the octupole-enhanced Schiff moment in 225Ra and alters the Schiff moments of 129Xe and 199Hg, with intermediate-state contributions correlating with E1 transition strengths.
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