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Explicitly correlated wave function for a boron atom

Published 28 Nov 2015 in physics.atom-ph | (1511.08928v1)

Abstract: We present results of high-precision calculations for a boron atom's properties using wave functions expanded in the explicitly correlated Gaussian basis. We demonstrate that the well-optimized 8192 basis functions enable a determination of energy levels, ionization potential, and fine and hyperfine splittings in atomic transitions with nearly parts per million precision. The results open a window to a spectroscopic determination of nuclear properties of boron including the charge radius of the proton halo in the $8$B nucleus.

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