Results 231 to 240 of about 18,863 (278)
The effect of a quantizing magnetic field on the filling of energy subbands of a degenerate nonrelativistic electron gas, whose magnetic moments are parallel and antiparallel to the direction of the field, is studied. Calculations are made under the assumption that the Fermi kinetic energy of the electron system increases as a result of Pauli's ...
G. A. Shul’man
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Expressions for the energies of the rotational levels associated with a nearly degenerate A1A2 pair of vibronic states in a molecule of symmetry C3v are presented. These expressions take into consideration Coriolis interaction between the levels associated with the A1 vibronic state and the levels associated with the A2 vibronic state.
Jon T. Hougen
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Formulas are developed to describe the rotational energy of a linear polyatomic molecule in a 2Σ or 3Σ electronic state, where one or more quanta of a degenerate bending vibration are excited. In 2Σ states the spin doubling and l-type doubling are independent, provided that the rotational constant B is large compared with the spin–rotation interaction
A. J. Merer, J. M. Allegretti
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zbMATH Open Web Interface contents unavailable due to conflicting licenses.
V. S. Kostko, G. A. Shul’man
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Energy Levels of Direct Excitons in Semiconductors with Degenerate Bands
A. Baldereschi, Nunzio C. Lipari
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Energy Levels of Indirect Excitons in Semiconductors with Degenerate Bands
N. O. Lipari, A. Baldereschi
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Nonstationary perturbation theory for the energy shifts of a degenerate level
A. N. Vasil’ev, A. L. Kitanin
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Energy Levels of Direct Excitons in Semiconductors with Degenerate Bands
M. Suffczyński
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