Semiconductor Physics, Quantum Electronics and Optoelectronics, 8 (3) P. 030-038 (2005).
References
1. M.F. Deigen, The energy of thermal dissociation and the main state of the double colour center in ionic crystals // Zhurn. Exp. i Teor. Fiziki 21(5), p. 992-997 (1951) (in Russian). | | 2. V.L. Vinetsky, M.S. Gitterman, On the theory of interaction between′′excess′′charges in ionic crystals // Ibid. 33(3), p. 730-734 (1957) (in Russian). | | 3. V.L. Vinetsky, On bipolaron states of charge carriers in ionic crystals // Ibid. 40(5), p. 1459-1467 (1961) (in Russian). | | 4. S.I. Pekar, Investigations on the electron theory of crystals. GITTL, Moscow - Leningrad (1951) (in Russian). | | 5. V.D. Lakhno, G.N. Chuev, The structure of polaron with a large radius in the tight binding limit // Uspekhi Fiz. Nauk 165(3), p. 285-298 (1995) (in Russian). https://doi.org/10.3367/UFNr.0165.199503c.0285 | | 6. S.A. McGill, K. Cao, W.B. Fowler, G.G. DeLeo, Bound-polaron model of effective-mass binding energies in GaN // Phys. Rev.B 57(15), p. 8951-8956 (1998). https://doi.org/10.1103/PhysRevB.57.8951 | | 7. S. Bednarek, J. Adamovski, Metastability and lattice relaxation for D0 and D− donor centers // Phys. Rev. B 57(23), p. 14729-14738 (1998). https://doi.org/10.1103/PhysRevB.57.14729 | | 8. N.I. Kashirina, V.D. Lakhno, S.S. Sychev, M.K. Sheinkman, Properties of shallow D−-centers in polar semiconductors // Fizika i Tekhnika Poluprov. 37(3), p. 318-322 (2003)(in Russian). https://doi.org/10.1134/1.1561522 | | 9. H. Fröhlich, Interaction of electrons with lattice vibrations // Proc. Roy. Soc. A 215(1121), p. 291-298 (1952). https://doi.org/10.1098/rspa.1952.0212 | | 10. M.F. Deigen, N.I. Kashirina, L.A. Suslin, Exchange interaction of impurity centers in crystals, which is caused by phonons // Zhurn. Exp. Teor. Fiziki 75(1), p.149-152 (1977) (in Russian). | | 11. N.I. Kashirina, L.A. Suslin, Temperature dependencies of exchange interaction between impurity centers caused by elementary excitations in solids // Phys. scripta 20(6), p. 669-672 (1979). https://doi.org/10.1088/0031-8949/20/5-6/023 | | 12. N.I. Kashirina, L.A. Suslin, Exchange splitting of two-electron systems in polar media // Ukr. Fiz. Zhurn. 26(1), p. 6-13 (1981)(in Russian). | | 13. R. Vrijen, E. Yablonovitch, K. Wang , H.W. Jiang, A. Balandin, D. DiVincenzo, Electron spin resonans transistors for quantum computer in silicon-germanium heterostractures // Phys. Rev. A 62(1), p. 012306-012306-10 (2000). https://doi.org/10.1103/PhysRevA.62.012306 | | 14. B.E. Kane, A silicon-based nuclear spin quantum computer // Nature, 393, p.133-137 (1998). https://doi.org/10.1038/30156 | | 15. G.P. Bergman, G.D. Doolen, P.C. Hammel, and V.I. Tsifrinovich, Magnetic resonance force microscopy quantum computer with tellurium donors in silicon // Phys. Rev. Lett. 86(13), p.2894 (2001). https://doi.org/10.1103/PhysRevLett.86.2894 | | 16. C. da Silva Pinheiro and G. Magela de Silva, Use of polarons and bipolarons in logical switches based on conjugated polymers // Phys. Rev. B 65(1) p. 094304-1−094304-5 (2002). https://doi.org/10.1103/PhysRevB.65.094304 | | 17. S.R.P. Smit and J. Owen, EPR measurements of exhange-coupled pairs of V2+ ions in KMgF3 // Phys. Rev. 154( 2), p. 487-492 (1967). https://doi.org/10.1103/PhysRev.154.487 | | 18. N. L. Huang and R. Orbach, Exchange interaction between nearest-neibor ion pairs. 1. V2+ in KMgF3 // Ibid. 154( 2), p. 487-492 (1967). https://doi.org/10.1103/PhysRev.154.487 | | 19. K.N. Shrivastava, Orbit-lattice interaction contribution to superexchange in V2+ - F- - V2+ linear system in cubic crystals // J. Phys. C 8( 24), p. 554-558 (1975). https://doi.org/10.1088/0022-3719/8/23/008 | | 20. N.I. Kashirina, L.A. Suslin, Cation-cation exchange via phonons // Fizika Tverd. Tela 24( 4), p.1213-1213 (1982)(in Russian). | | 21. A.M. Reshchikova, Elastic properties of KMgF3 single crystals // Ibid. 10(8), p. 2558-2561 (1968) (in Russian). | | 22. K.I. Kugel', D.I. Khomsky, Crystal structure and magnetic properties of substances with orbital degeneration // Zhurn. Exp. Teor. Fiziki 64(4), p. 1429-1439 (1973) (in Russian). | | 23. E. Dorman, D. Hohe, V.Jaccarino, High-temperature EPR in solid and molten paramagnets // Phys. Rev. B 14(7), p. 2715-2739 (1976). https://doi.org/10.1103/PhysRevB.14.2715 | | 24. K.N. Shrivastava and V. Jaccarino, Variation of superexchange with interatomic distance. 1. The T2g system V2+- F- - V2+ // Rhys. Rev. 13(1), p. 293-303 (1976). https://doi.org/10.1103/PhysRevB.13.299 | | 25. S.F. Altshuler, B.M. Kozyrev, Electron paramagnettic resonance of intermediate group element compounds, Moscow, Nauka (1972) (in Russian). | | 26. T.A. Kennedy, Ho C. Sung, G. and Seidel, Tempeuature dependence of the exchange interaction in K2CuCl4 2H2O // Phys. Rev. B 2(9), p. 3645-3651 (1970). https://doi.org/10.1103/PhysRevB.2.3645 | | 27. T. Ocuda and M. Date, Anomalous temperature dependance of exchange interactions in K2CuCl4 2H2O and K2CuCl4 2D2O // J. Phys. Soc. Jpn 28(2), p. 308-312 (1970). https://doi.org/10.1143/JPSJ.28.308 | | 28. A.R. Miedema, R.F. Wielinga and W.J. Huiskamp, Experimantal study of the body centered cubic Heisenberg ferromagnet // Physica 31(11), p.1585-1598 (1965). https://doi.org/10.1016/0031-8914(65)90127-8 | | 29. D.W. Wood and N.W. Dalton, Determination of exchange interaction in Cu(NH4)2 Cl4 2H2O) and CuK2Cl4 2H2O // Proc. Phys. Soc. 87(557), p.755-765 (1966). https://doi.org/10.1088/0370-1328/87/3/317 | | 30. K.N. Shrivastava, Thermal effects in magnetic exchange interaction // Phys. status solidi(b) 78(2) p. 749-755 (1976). https://doi.org/10.1002/pssb.2220780236 | | 31. K.I. Kugel', D.I. Khomsky, Polaron effects and exchange interaction in magnetic dielectrics with Jan-Teller ions // Zhurn. Exp. Teor. Fiziki 79(3), p. 987-998. (1980) (in Russian). | | 32. P.W. Anderson, The resonating valens bond state in La2CuO4 and superconductivity // Science 235(6), p. 197-1198 (1987). https://doi.org/10.1126/science.235.4793.1196 | | 33. N.F. Mott, Polaron models of high-temperature superconductors // J. Phys.: Condens. Matter 5(22), p. 3487-3506 (1993). https://doi.org/10.1088/0953-8984/5/22/003 | |
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