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Magnetic dipole hyperfine interactions in 137Ba+ and the accuracies of the neutral weak interaction matrix elements

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dc.contributor.author Sahoo, B. K
dc.contributor.author Gopakumar, G
dc.contributor.author Chaudhuri, R. K
dc.contributor.author Das, B. P
dc.contributor.author Merlitz, H
dc.contributor.author Mahapatra, U. S
dc.contributor.author Mukherjee, D
dc.date.accessioned 2008-09-15T12:04:14Z
dc.date.available 2008-09-15T12:04:14Z
dc.date.issued 2003-10
dc.identifier.citation Physical Review A, Vol. 68, No. 4, pp. 040501 en
dc.identifier.issn 1050 - 2947
dc.identifier.uri http://hdl.handle.net/2248/3618
dc.description.abstract The relativistic coupled-cluster method is applied to calculate the magnetic dipole hyperfine constant “A” of the 6s1/2, 6p1/2, 6p3/2, and 5d3/2 states of singly ionized barium. After the inclusion of two-body correlation effects into the computation of the hyperfine matrix elements, the accuracy of the obtained values was significantly increased compared to earlier computations. Based on these numbers and earlier calculations of the electric dipole transitions and excitation energies, an estimate for the accuracy of the |[5p6]6s1/2>→|[5p6]5d3/2> parity-nonconserving electric dipole transition amplitude is carried out. The results suggest that for the first time, to our knowledge, a precision of better than 1% is feasible for this transition amplitude. en
dc.language.iso en en
dc.publisher The American Physical Society en
dc.relation.uri http://dx.doi.org/10.1103/PhysRevA.68.040501 en
dc.rights © The American Physical Society en
dc.subject The Relativistic Coupled-Cluster Method en
dc.subject Magnetic Dipole Hyperfine Interactions en
dc.title Magnetic dipole hyperfine interactions in 137Ba+ and the accuracies of the neutral weak interaction matrix elements en
dc.type Article en


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