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Local Electron States in Ellipsoidal Nanosystems in Magnetic Field: Theory

Published in Optics (Volume 3, Issue 6-1)
Received: 29 September 2014    Accepted: 5 October 2014    Published: 25 October 2014
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Abstract

The influence of a homogeneous magnetic field on the electron states localized over the surface of an ellipsoidal semiconductor (dielectric) nanoparticle by the electrostatic image forces is studied theoretically. The effects of the resonant interaction of light with such local electron states in presence and in absence of a homogeneous magnetic field are investigated.

Published in Optics (Volume 3, Issue 6-1)

This article belongs to the Special Issue Optics and Spectroscopy of the Charge Carriers and Excitons States in Quasi - Zero - Dimensional Nanostructures

DOI 10.11648/j.optics.s.2014030601.17
Page(s) 48-52
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), 2024. Published by Science Publishing Group

Keywords

Local Electron States, Ellipsoidal Nanosystems, Homogeneous Magnetic Field, Resonant Interaction

References
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[3] S.I. Pokutnyi, Physics Letters A. 342, 347 (2005).
[4] S.I. Pokutnyi, Phys. Express. 1, 158 (2011).
[5] S.I. Pokutnyi, J. Nanosciences Letters. 1, 191 (2011).
[6] N.A. Efremov, S.I. Pokutnyi, Theory of local electron states in ultradispersion media. Preprint IS USSR (Moscow: Institute of spectroscopy: №1 (1984)).
[7] N.A. Efremov, S.I. Pokutnyi, Solid State Phys. 27, 48 (1985).
[8] N.A. Efremov, S.I. Pokutnyi, Solid State Phys. 32, 1697 (1990).
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[10] S.I. Pokutnyi, N.A. Efremov, Phys. Status Solidi B. 165, 109(1991).
[11] S.I. Pokutnyi, Phys. Status Solidi B. 172, 573 (1992).
[12] S.I. Pokutnyi, Solid State Phys. 35, 129 (1993).
[13] S.I. Pokutnyi, Semiconductors. 31, 1247 (1997).
[14] P. Antoniewicz, G. Bennet, J. Chem. Phys. 77, 4573 (1982).
[15] LD Landau, EM Lifshitz, Electrodynamics of Continuous Media. In Course of Theoretical Physics, vol. 8, 2nd edn. Pergamon, New York (1973).
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  • APA Style

    Sergey I. Pokutnyi. (2014). Local Electron States in Ellipsoidal Nanosystems in Magnetic Field: Theory. Optics, 3(6-1), 48-52. https://doi.org/10.11648/j.optics.s.2014030601.17

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    ACS Style

    Sergey I. Pokutnyi. Local Electron States in Ellipsoidal Nanosystems in Magnetic Field: Theory. Optics. 2014, 3(6-1), 48-52. doi: 10.11648/j.optics.s.2014030601.17

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    AMA Style

    Sergey I. Pokutnyi. Local Electron States in Ellipsoidal Nanosystems in Magnetic Field: Theory. Optics. 2014;3(6-1):48-52. doi: 10.11648/j.optics.s.2014030601.17

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  • @article{10.11648/j.optics.s.2014030601.17,
      author = {Sergey I. Pokutnyi},
      title = {Local Electron States in Ellipsoidal Nanosystems in Magnetic Field: Theory},
      journal = {Optics},
      volume = {3},
      number = {6-1},
      pages = {48-52},
      doi = {10.11648/j.optics.s.2014030601.17},
      url = {https://doi.org/10.11648/j.optics.s.2014030601.17},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.optics.s.2014030601.17},
      abstract = {The influence of a homogeneous magnetic field on the electron states localized over the surface of an ellipsoidal semiconductor (dielectric) nanoparticle by the electrostatic image forces is studied theoretically. The effects of the resonant interaction of light with such local electron states in presence and in absence of a homogeneous magnetic field are investigated.},
     year = {2014}
    }
    

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    AU  - Sergey I. Pokutnyi
    Y1  - 2014/10/25
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    JF  - Optics
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    AB  - The influence of a homogeneous magnetic field on the electron states localized over the surface of an ellipsoidal semiconductor (dielectric) nanoparticle by the electrostatic image forces is studied theoretically. The effects of the resonant interaction of light with such local electron states in presence and in absence of a homogeneous magnetic field are investigated.
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Author Information
  • Chuiko Institute of Surface Chemistry, National Academy of Sciences of Ukraine, Kyiv, Ukraine

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