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ЖУРНАЛЫ // Теоретическая и математическая физика

ТМФ, 1976, том 27, номер 2, страницы 254–261 (Mi tmf3324)

Статистика молекулярных экситонов и магнонов при больших концентрациях
И. Г. Каплан

Эта публикация цитируется в следующих статьяx:
  1. Ronald Columbié-Leyva, Alberto López-Vivas, Jacques Soullard, Ulises Miranda, Ilya G. Kaplan, “Symmetry of Identical Particles, Modern Achievements in the Pauli Exclusion Principle, in Superconductivity and in Some Other Phenomena”, Symmetry, 15:3 (2023), 701  crossref
  2. Ilya G. Kaplan, “Modern State of the Pauli Exclusion Principle and the Problems of Its Theoretical Foundation”, Symmetry, 13:1 (2020), 21  crossref
  3. I. G. Kaplan, “The Pauli Exclusion Principle and the Problems of its Theoretical Substantiation1”, Russ Phys J, 63:8 (2020), 1305  crossref
  4. The Pauli Exclusion Principle, 2016, 1  crossref
  5. The Pauli Exclusion Principle, 2016, 106  crossref
  6. I. G. Kaplan, “The Pauli Exclusion Principle. Can It Be Proved?”, Found Phys, 43:10 (2013), 1233  crossref
  7. I. G. Kaplan, Fundamental World of Quantum Chemistry, 2003, 183  crossref
  8. I. G. Kaplan, “Is the Pauli exclusive principle an independent quantum mechanical postulate?”, Int J of Quantum Chemistry, 89:4 (2002), 268  crossref
  9. I.G. Kaplan, O. Navarro, “Statistics and properties of coupled hole pairs in superconducting ceramics”, Physica C: Superconductivity, 341-348 (2000), 217  crossref
  10. O. Navarro, I.G. Kaplan, “Theoretical Study of Hole-Pair System in a Periodical Lattice”, phys. stat. sol. (b), 220:1 (2000), 493  crossref
  11. H.O. Frota, F.S. de Aguiar, “Statistical mechanics of relativistic anyons”, Physica A: Statistical Mechanics and its Applications, 269:2-4 (1999), 418  crossref
  12. I G Kaplan, O Navarro, “Charge transfer and the statistics of holons in a periodical lattice”, J. Phys.: Condens. Matter, 11:32 (1999), 6187  crossref
  13. Ilya G. Kaplan, “Exclusion principle and indistinguishability of identical particles in quantum mechanics”, Journal of Molecular Structure, 272 (1992), 187  crossref
  14. H.O. Frota, A.C.R. Bittencourt, “The magnetized d-dimensional ideal paragas”, Physica A: Statistical Mechanics and its Applications, 160:3 (1989), 386  crossref
  15. Nguyen Ba An, “Exciton Nonequilibrium Steady States in Laser‐Excited Molecular Crystals”, Physica Status Solidi (b), 150:2 (1988), 845  crossref
  16. M. C. de Sousa Vieira, C. Tsallis, “D-Dimensional ideal gas in parastatistics: Thermodynamic properties”, J Stat Phys, 48:1-2 (1987), 97  crossref
  17. А. Ю. Гаевский, И. Г. Каплан, М. А. Рувинский, “Корреляционная функция плотность-плотность системы молекулярных экситонов”, ТМФ, 48:1 (1981), 129–136  mathnet; A. Yu. Gaevskii, I. G. Kaplan, M. A. Puvinskii, “Density-density correlation function of a system of molecular excitons”, Theoret. and Math. Phys., 48:1 (1981), 653–658  crossref  isi
  18. D. Bonchev, “Information theory interpretation of the Pauli principle and Hund rule”, Int J of Quantum Chemistry, 19:4 (1981), 673  crossref
  19. Eugene S. Kryachko, “Constructive approach to symmetrized two-particle expansions”, Reports on Mathematical Physics, 18:1 (1980), 67  crossref


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