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      Energy levels of Th+ between 7.3 and 8.3 eV

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          Abstract

          Using resonant two-step laser excitation of trapped 232Th+ ions, we observe 43 previously unknown energy levels within the energy range from 7.3 to 8.3 eV. The high density of states promises a strongly enhanced electronic bridge excitation of the 229mTh nuclear state that is expected in this energy range. From the observation of resonantly enhanced three-photon ionization of Th+, the second ionization potential of thorium can be inferred to lie within the range between 11.9 and 12.3 eV. Pulsed laser radiation in a wide wavelength range from 237 to 289 nm is found to provide efficient photodissociation of molecular ions that are formed in reactions of Th+ with impurities in the buffer gas, leading to a significantly increased storage time for Th+ in the ion trap.

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          "Repulsion of Energy Levels" in Complex Atomic Spectra

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            Ab initiopseudopotential and density-functional all-electron study of ionization and excitation energies of actinide atoms

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              Wigner Crystals of 229Th for Optical Excitation of the Nuclear Isomer

              We have produced laser-cooled Wigner crystals of 229Th3+ in a linear Paul trap. The magnetic dipole (A) and electric quadrupole (B) hyperfine constants for four low-lying electronic levels and the relative isotope shifts with respect to 232Th3+ for three low-lying optical transitions are measured. Using the hyperfine B constants in conjunction with prior atomic structure calculations, a new value of the spectroscopic nuclear electric quadrupole moment Q = 3.11(16) eb is deduced. These results are a step towards optical excitation of the low-lying isomer level in the 229Th nucleus.
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                Author and article information

                Journal
                03 May 2013
                Article
                10.1103/PhysRevA.88.012512
                1305.0765
                4fcc14fe-8783-442c-af49-25e59326df1e

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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                Custom metadata
                Phys. Rev. A 88, 012512 (2013)
                7 pages, 6 figures
                physics.atom-ph

                Atomic & Molecular physics
                Atomic & Molecular physics

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