Atomic Structure of the Heaviest Elements
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MDPI - Multidisciplinary Digital Publishing Institute
Abstract
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This reprint brings together many scientific contributions on current actinide research, both theoretical and experimental. Special attention is given to the theoretical modeling of the atomic spectra of actinides, the experimental study of their atomic and nuclear structure, and new developments in the production and spectroscopy of their elusive and rather exotic radionuclides.
Keywords
atomic structure, level and excitation energies, hyperfine splitting, isotope-shift, Jena Atomic Calculator, LSJ level notation, open d- and f-shell ion, relativistic, transition probability, opacity, atomic data, kilonovae, oscillator strengths, neutron stars, resonance ionization laser spectroscopy, gas cell, hypersonic gas jets, radio frequency quadrupoles, nuclear ground state properties, isotope shift, hyperfine structure, Th-229, nuclear clock, hyperfine structure spectroscopy, ion trap, collisional de-excitation, actinide elements, resonance laser ionization, laser spectroscopy, resonance ionization, atomic level scheme, radiation detection, heavy actinides, atomic databases, standard reference databases, atomic spectroscopy, actinides, actinium, spectral lines, energy levels, transition probabilities, ionization energy, MRCI, electronic structure, electric dipole transitions, californium, resonance ionization spectroscopy, ionization potential, JetRIS, fluorescence spectroscopy, gas-jet, de Laval nozzle, nobelium, NEXT, neutron-rich nuclei, mutlinucleon transfer, solenoid separator, mass spectrometer, atomic structure theory, optical spectroscopy, actinides and transactinides, atomic and nuclear properties, thorium-229, trace analysis, superheavy elements, laser resonance chromatography, thema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: general, thema EDItEUR::P Mathematics and Science::PH Physics