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This article is cited in 1 scientific paper (total in 1 paper)
Semiclassical quantization of Bohr orbits in the helium atom
V. V. Belov, V. A. Maksimov Moscow State Institute of Electronics and Mathematics
Abstract:
We use the complex WKB–Maslov method to construct the semiclassical spectral
series corresponding to the resonance Bohr orbits in the helium atom.
The semiclassical energy levels represented as the Rydberg tetra series
correspond to the doubly symmetrically excited states of helium-like atoms.
This level series contains the Rydberg triple series reported by Richter and
Wintgen in 1991, which corresponds to the $Z^{2+}e^-e^-$ configuration of
electrons observed by Eichmann and his collaborators in experiments on
the laser excitation of the barium atom in 1992. The lower-level extrapolation
of the formula obtained for the semiclassical spectrum gives the value of
the ground state energy, which differs by 6% from the experimental value
obtained by Bergeson and his collaborators in 1998. We also calculate
the fine structure of the semiclassical spectrum due to the spin–orbit and
spin–spin interactions of electrons.
Keywords:
semiclassical quantization, spectral series, complex WKB–Maslov method, generalized action–angle variable, generalized harmonic oscillator variable.
Received: 12.10.2006
Citation:
V. V. Belov, V. A. Maksimov, “Semiclassical quantization of Bohr orbits in the helium atom”, TMF, 151:2 (2007), 261–286; Theoret. and Math. Phys., 151:2 (2007), 659–680
Linking options:
https://www.mathnet.ru/eng/tmf6044https://doi.org/10.4213/tmf6044 https://www.mathnet.ru/eng/tmf/v151/i2/p261
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Abstract page: | 906 | Full-text PDF : | 442 | References: | 113 | First page: | 5 |
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