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- W1954526467 abstract "We carry out relativistic many-body calculations of the Stark-induced absorption coefficient on the 254-nm $6s6ptext{ }{^{3}P}_{1}(F=1/2)--6{s}^{2}text{ }{^{1}S}_{0}$ line of $^{199}text{H}text{g}$ atom, the effect considered before by and Lamoreaux and Fortson [Phys. Rev. A 46, 7053 (1992)] using a simple central field estimate. The Stark-induced admixing of states of opposite parity opens additional $M1$ and $E2$ transition channels. We find that the resulting $M1text{ensuremath{-}}E1$ absorption dominates over $E2text{ensuremath{-}}E1$ absorption. The value of the $E2text{ensuremath{-}}E1$ absorption coefficient depends strongly on the details of treatment of the correlation problem. As a result, our numerical values differ substantially from those of the earlier central field calculation. Reliable calculation of this effect can enable a useful experimental check on the optical technique being used to search for a permanent electric-dipole moment of the $^{199}text{H}text{g}$ atom." @default.
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- W1954526467 date "2009-04-07" @default.
- W1954526467 modified "2023-10-17" @default.
- W1954526467 title "Calculation of Stark-induced absorption on the6s6p P31–6s2 S10transition in Hg" @default.
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- W1954526467 doi "https://doi.org/10.1103/physreva.79.042503" @default.
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