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Metastable Bound State of Likely Charged Classic Coulomb Particles

Published: 10 March 2013
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Abstract

When the classical charged particle is scattered on the likely charged target particle, executing the rapid finite motion, a metastable bound state of the incident particle and the target particle may occur. This type of behavior differs dramatically from the Rutherford scattering.

Published in American Journal of Modern Physics (Volume 2, Issue 2)
DOI 10.11648/j.ajmp.20130202.13
Page(s) 53-57
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2013. Published by Science Publishing Group

Keywords

Charged particle; Finite motion; Metastable bound state; Scattering

References
[1] Cooper L. N., Bound electron pairs in a degenerate Fermi gas. Phys. Rev., 104(4), pp. 11891190, 1956.
[2] Dvornikov M., Effective attraction between oscillating electrons in a plasmoid via acoustic wave exchange. Proc. Royal Soc. A, 468(2138), pp. 415428, 2012.
[3] Shukla P. K., and Eliasson B., Novel attractive force between ions in quantum plasmas. Phys. Rev. Lett., 108(16), pp. 165007-15, 2012.
[4] Lekner J., Analytical expression for the electric field enhancement between two closely-spaced conducting spheres. J. Electrostatics, 68(4), pp. 299304, 2010.
[5] Lekner J., Electrostatics of two charged conducting spheres. Proc. Royal Soc. A, 468(2145), pp. 28292848, 2012.
[6] Lekner J., Electrostatic force between two conducting spheres at constant potential difference. J. Appl. Phys., 111(7), pp. 076102-12, 2012.
[7] Landau L. D., Lifshitz E. M., Mechanics, 3rd ed. Butterworth-Heinemann, Oxford, 1976.
[8] Dubinov A. E., Saikov S. K., and Selemir V. D., On dynamics of metastable electrons in a virtual cathode. Radiophysics and Quantum Electronics, 45(4), pp. 318321, 2002
[9] Dubinov A. E., Saikov S. K., Metastable balancing oscillators. Plasma. Phys. Rep., 28(5), pp. 398402, 2002.
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  • APA Style

    Alexander E. Dubinov, Ilya N. Kitayev. (2013). Metastable Bound State of Likely Charged Classic Coulomb Particles. American Journal of Modern Physics, 2(2), 53-57. https://doi.org/10.11648/j.ajmp.20130202.13

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    ACS Style

    Alexander E. Dubinov; Ilya N. Kitayev. Metastable Bound State of Likely Charged Classic Coulomb Particles. Am. J. Mod. Phys. 2013, 2(2), 53-57. doi: 10.11648/j.ajmp.20130202.13

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    AMA Style

    Alexander E. Dubinov, Ilya N. Kitayev. Metastable Bound State of Likely Charged Classic Coulomb Particles. Am J Mod Phys. 2013;2(2):53-57. doi: 10.11648/j.ajmp.20130202.13

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  • @article{10.11648/j.ajmp.20130202.13,
      author = {Alexander E. Dubinov and Ilya N. Kitayev},
      title = {Metastable Bound State of Likely Charged Classic Coulomb Particles},
      journal = {American Journal of Modern Physics},
      volume = {2},
      number = {2},
      pages = {53-57},
      doi = {10.11648/j.ajmp.20130202.13},
      url = {https://doi.org/10.11648/j.ajmp.20130202.13},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.ajmp.20130202.13},
      abstract = {When the classical charged particle is scattered on the likely charged target particle, executing the rapid finite motion, a metastable bound state of the incident particle and the target particle may occur. This type of behavior differs dramatically from the Rutherford scattering.},
     year = {2013}
    }
    

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    T1  - Metastable Bound State of Likely Charged Classic Coulomb Particles
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    AU  - Ilya N. Kitayev
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    DO  - 10.11648/j.ajmp.20130202.13
    T2  - American Journal of Modern Physics
    JF  - American Journal of Modern Physics
    JO  - American Journal of Modern Physics
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    AB  - When the classical charged particle is scattered on the likely charged target particle, executing the rapid finite motion, a metastable bound state of the incident particle and the target particle may occur. This type of behavior differs dramatically from the Rutherford scattering.
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Author Information
  • Sarov Institute of Physics and Technology (SarFTI), National Research Nuclear University “MEPhI,” Sarov, Nizhni Novgorod region, 607188, Russia

  • Sarov Institute of Physics and Technology (SarFTI), National Research Nuclear University “MEPhI,” Sarov, Nizhni Novgorod region, 607188, Russia

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