author_facet Mueller, Ronald O.
Hughes, Vernon W.
Mueller, Ronald O.
Hughes, Vernon W.
author Mueller, Ronald O.
Hughes, Vernon W.
spellingShingle Mueller, Ronald O.
Hughes, Vernon W.
Proceedings of the National Academy of Sciences
Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
Multidisciplinary
author_sort mueller, ronald o.
spelling Mueller, Ronald O. Hughes, Vernon W. 0027-8424 1091-6490 Proceedings of the National Academy of Sciences Multidisciplinary http://dx.doi.org/10.1073/pnas.71.8.3287 <jats:p>The atomic regime in which the interaction of the electron with an external magnetic field dominates the Coulomb interaction with the nucleus, relevant to pulsars, can be realized at laboratory magnetic fields for discrete autoionized states of hydrogen, at energies above the ionization limit. Approximate wave functions, energy levels, and electric dipole transition probabilities are presented for hydrogen, and an atomic beam absorption spectroscopy experiment at 50 kG is proposed to study this new regime.</jats:p> Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen Proceedings of the National Academy of Sciences
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imprint Proceedings of the National Academy of Sciences, 1974
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title Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_unstemmed Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_full Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_fullStr Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_full_unstemmed Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_short Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_sort atomic regime in which the magnetic interaction dominates the coulomb interaction for highly excited states of hydrogen
topic Multidisciplinary
url http://dx.doi.org/10.1073/pnas.71.8.3287
publishDate 1974
physical 3287-3289
description <jats:p>The atomic regime in which the interaction of the electron with an external magnetic field dominates the Coulomb interaction with the nucleus, relevant to pulsars, can be realized at laboratory magnetic fields for discrete autoionized states of hydrogen, at energies above the ionization limit. Approximate wave functions, energy levels, and electric dipole transition probabilities are presented for hydrogen, and an atomic beam absorption spectroscopy experiment at 50 kG is proposed to study this new regime.</jats:p>
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author Mueller, Ronald O., Hughes, Vernon W.
author_facet Mueller, Ronald O., Hughes, Vernon W., Mueller, Ronald O., Hughes, Vernon W.
author_sort mueller, ronald o.
container_issue 8
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container_title Proceedings of the National Academy of Sciences
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description <jats:p>The atomic regime in which the interaction of the electron with an external magnetic field dominates the Coulomb interaction with the nucleus, relevant to pulsars, can be realized at laboratory magnetic fields for discrete autoionized states of hydrogen, at energies above the ionization limit. Approximate wave functions, energy levels, and electric dipole transition probabilities are presented for hydrogen, and an atomic beam absorption spectroscopy experiment at 50 kG is proposed to study this new regime.</jats:p>
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imprint Proceedings of the National Academy of Sciences, 1974
imprint_str_mv Proceedings of the National Academy of Sciences, 1974
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spelling Mueller, Ronald O. Hughes, Vernon W. 0027-8424 1091-6490 Proceedings of the National Academy of Sciences Multidisciplinary http://dx.doi.org/10.1073/pnas.71.8.3287 <jats:p>The atomic regime in which the interaction of the electron with an external magnetic field dominates the Coulomb interaction with the nucleus, relevant to pulsars, can be realized at laboratory magnetic fields for discrete autoionized states of hydrogen, at energies above the ionization limit. Approximate wave functions, energy levels, and electric dipole transition probabilities are presented for hydrogen, and an atomic beam absorption spectroscopy experiment at 50 kG is proposed to study this new regime.</jats:p> Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen Proceedings of the National Academy of Sciences
spellingShingle Mueller, Ronald O., Hughes, Vernon W., Proceedings of the National Academy of Sciences, Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen, Multidisciplinary
title Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_full Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_fullStr Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_full_unstemmed Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_short Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
title_sort atomic regime in which the magnetic interaction dominates the coulomb interaction for highly excited states of hydrogen
title_unstemmed Atomic Regime in Which the Magnetic Interaction Dominates the Coulomb Interaction for Highly Excited States of Hydrogen
topic Multidisciplinary
url http://dx.doi.org/10.1073/pnas.71.8.3287