Semiconductor
Physics, Quantum Electronics & Optoelectronics. 2014. V. 17, N
3. P. 260-267.
References 1. G. Verbist, F.M. Peeters, J.T. Devreese, Large bipolarons in two and three dimensions . Phys. Rev. B, 43(4), p. 2712-2720 (1991).https://doi.org/10.1103/PhysRevB.43.2712 2. J. Adamowski, S. Bednarek, Stability of large bipolarons . J. Phys.: Condens. Matter, 4(11), p. 2845-2855 (1992). https://doi.org/10.1088/0953-8984/4/11/012 3. J. Adamowski, Formation of Frohlich bipolarons . Phys. Rev. B, 39(6), p. 3649-3652 (1989). https://doi.org/10.1103/PhysRevB.39.3649 4. N.I. Kashirina, V.D. Lakhno, V.V. Sychyov, Correlation effects and Pekar bipolaron (arbitrary electron-phonon interaction) . Physica status solidi (b), 239(1), p. 174-184 (2003). https://doi.org/10.1002/pssb.200301818 5. R.A. Ogg, Bose-Einstein condensation of trapped electron pairs. Phase separation and superconductivity of metal-ammonia solutions . Phys. Rev. 69, p. 243-243 (1946). https://doi.org/10.1103/PhysRev.69.243 6. R.A. Ogg, Physical interaction of electrons with liquid dielectric media. The properties of metal-ammonia solutions . Phys. Rev. 69, p. 668-668 (1946). https://doi.org/10.1103/PhysRev.69.668.2 7. R.A. Ogg, Superconductivity in solid metal-ammonia solutions . Phys. Rev. 70(1), p. 93-93 (1946). https://doi.org/10.1103/PhysRev.70.93 8. S.I. Pekar, Research in Electron Theory of Crystals. GITTL Publ., Moscow-Leningrad, 1951 (in Russian). [S.I. Pekar, Research in Electron Theory of Crystals. United States Atomic Energy Commision, Division of Technical Information, Washington, 1963]. 9. O.F. Tomasevich, F'-centers in alkali-halide crystals . Zhurnal Eksp. Teor. Fiziki, 21(11), p. 1223-1227 (1951), in Russian. 10. A.S. Davydov, On the theory of the magnetic properties of metal-ammonia solutions . Nauchnye zapiski Kievskogo gos. universiteta. XI(IV); Trudy fizich. fakult. Kiev. gos. univ. 5 (1), p. 26-31 (1952), in Russian. 11. V.L. Vinetskii, M.S. Giterman, To the theory of added charges interaction in polar crystals . Zhurnal Eksp. Teor. Fiziki, 33(3), p. 730-734 (1957), in Russian. 12. V.L. Vinetskii, About bipolaron states of charge carriers in ionic crystals . Zhurnal Eksp. Teor. Fiziki, 40(5), p. 1459-1468 (1961), in Russian. 13. M.F. Deigen, Thermal dissociation and the ground state energy of the double color center in ionic crystals . Zhurnal Eksp. Teor. Fiziki, 21(9), p. 992-1000 (1951), in Russian. 14. T. Masumi, A supplemental improvement of Feynman-polaron model and the possibility of bipolaron formation . Suppl. Progr. Teor. Phys. 57, p. 22-34 (1975). https://doi.org/10.1143/PTPS.57.22 15. S.G. Suprun and B.Ya. Moyzhes, About the role of electron correlation in the formation of Pekar bipolaron . Fizika Tverd. Tela, 24(5), p. 1571-1573 (1982), in Russian. 16. V.K. Mukhomorov, Stability bipolaron formations, electron-electron correlations, the variational principle and the virial theorem . Fizika Tverd. Tela, 48(5), p. 814-820 (2006), in Russian. 17. N.I. Kashirina, V.D. Lakhno, The spatial configuration of the bipolaron and virial theorem . Fizika Tverd. Tela, 50(1), p. 11-16 (2008), in Russian. 18. J.C. Slater, Quantum Theory of Molecules and Solids, Vol. 1: Electronic Structure of Molecules. McGraw-Hill, New York, 1963. 19. D.M. Larsen, Giant binding of D- centers in polar crystals . Phys. Rev. B, 23 (2), p. 628-631 (1981). https://doi.org/10.1103/PhysRevB.23.628 |