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20032007
most citedRelativistic multi-reference Fock-space coupled-cluster calculation of the forbidden $6s^2^1 S_0 \longrightarrow 6s5d^3 D_1$ magnetic-dipole transition in ytterbium

9 citations · 13 across the 13 of their papers we have counts for

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Showing 2007Show all

5 papers · 1 filter

physics.atom-ph2007

Theoretical spectroscopic studies of the atomic transitions and lifetimes of low-lying states in Ti IV

Subhasish Mandal, Gopal Dixit, B. K. Sahoo +2

The astrophysically important electric quadrupole (E2) and magnetic dipole (M1) transitions for the low-lying states of triply ionized titanium (Ti IV) are calculated very accurate…

physics.atom-ph2007

Relativistic ab initio study of forbidden transitions of singly ionized Zinc using CCSD(T)

Gopal Dixit, B. K. Sahoo, R. K. Chaudhuri +1

In this work, the {\it ab initio} calculations have been carried out to study the oscillator strengths corresponding to `forbidden transitions' of astrophysically important electro…

physics.atom-ph20071 cited

The electron electric dipole moment enhancement factors of Rubidium and Caesium atoms

H. S. Nataraj, B. K. Sahoo, B. P. Das +2

The enhancement factors of the electric dipole moment (EDM) of the ground states of two paramagnetic atoms; rubidium (Rb) and caesium (Cs) which are sensitive to the electron EDM a…

physics.atom-ph20079 cited

Relativistic multi-reference Fock-space coupled-cluster calculation of the forbidden $6s^2^1 S_0 \longrightarrow 6s5d^3 D_1$ magnetic-dipole transition in ytterbium

Chiranjib Sur, Rajat K Chaudhuri

We report the forbidden $6s^{2} ^{1}S_{0}\longrightarrow6s5d ^{3}D_{1}$ magnetic-dipole transition amplitude computed using multi-reference Fock-space coupled-cluster theory. Our c…

physics.atom-ph20073 cited

A relativistic unitary coupled-cluster study of electric quadrupole moment and magnetic dipole hyperfine constants of ^{199}Hg^{+}

Chiranjib Sur, Rajat K Chaudhuri

Searching for an accurate optical clock which can serve as a better time standard than the present day atomic clock is highly demanding from several areas of science and technology…