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Quantum Spectra of Hydrogen Atoms in Various Magnetic Fields
with the Closed Orbit Theory |
PENG Liang-You1;ZHANG Xian-Zhou1;RAO Jian-Guo1,2 |
1Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences, Wuhan 430071
2Department of Applied Mathematics and Theoretical Physics, The Queen’s University of Belfast, Belfast BT7 1NN,UK |
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Cite this article: |
PENG Liang-You, ZHANG Xian-Zhou, RAO Jian-Guo 2002 Chin. Phys. Lett. 19 32-35 |
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Abstract The quantum spectra of hydrogen atoms in various magnetic fields have been calculated with the closed orbit theory. The magnitude of the magnetic field decreases from 5.96 T to 0.56T with a step of 0.6T. We demonstrate schematically that the closed orbits disappear with the decrease of the magnitude of the magnetic field when the corresponding finite resolution of experiment is fixed. This may give us a good way to control the shape and the number of the closed orbits in the system, thus to control where there should exist a peak in the Fourier transformation of the quantum spectra.
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Keywords:
32.70.Cs
32.60.+i
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Published: 01 January 2002
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PACS: |
32.70.Cs
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(Oscillator strengths, lifetimes, transition moments)
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32.60.+i
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(Zeeman and Stark effects)
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