Semiconductor Physics, Quantum Electronics and Optoelectronics, 9 (3) P. 017-021 (2006).
DOI: https://doi.org/10.15407/spqeo9.03.017


References

1. W. Walukiewicz, Dislocation density reduction by isoelectronic impurities in semiconductors // Appl. Phys. Lett. 20, p. 2009-2011 (1989).
https://doi.org/10.1063/1.101198
2. A.V. Novoselova, V.B. Lazarev et al., Physics and chemical properties of semiconductormaterials. Nauka, Moscow, 1976 (in Russian).
3. R. Grangler, A. Lasbley, S. Rolland et al. // J. Crystal Growth 88, p. 682 (1988).
4. V.A. Rabinovich, Z.Ya. Khavin, Brief chemical handbook. Khimiya, Leningrad, 1978 (in Russian).
5. G.V. Beketov, А.Е. Belyayev, S.А. Vitusevich, S.V. Kavertsev, S.M. Komirenko, Peculiarities of transport effects in epitaxial films n-MnHgTe/CdZnTe // Fizika I tekhnika poluprovodnikov 31(3), p. 342-346 (1997) (in Russian).
https://doi.org/10.1134/1.1187115
6. N.N. Berchenko, V.E. Krevs, V.G. Sredin, Semiconductor solid solutions and theirapplication. Voyenizdat, Moscow, 1982 (in Russian).
7. J.K. Furdyna, Electrical, optical and magnetic properties of Hg1−xMnxTe // J. Vac. Sci. Technol. 21, No 1, p. 220-228 (1982).
https://doi.org/10.1116/1.571720
8. C. Lewiner, J.A. Gaj, G. Bastard, Indirect exchange interaction in Hg1−xMnxTe and Cd1−xMnxTe alloys / Proc. Intern. Conf. on Magnetic Semiconductors, Montpellier, 1979. // J. Phys. (France) 41,p. C5-289 (1980).
https://doi.org/10.1051/jphyscol:1980549
9. S. Nagata, R.R. Galazka, D.P. Mullin et al., Magnetic susceptibility, specific heat, and the spin-glass transition in Hg1−xMnxTe // Phys. Rev. B 22, p. 3344-3355 (1980).
https://doi.org/10.1103/PhysRevB.22.3344
10. N.V. Brandt and V.V. Moshchalkov, Semimagnetic semiconductors // Adv. Phys. 33, p. 193-256 (1984).
https://doi.org/10.1080/00018738400101661
11. G.G. Tarasov, Yu.I. Mazur, J.W. Tomm, Peculiarities of interband photoluminescence in the semimagnetic semiconductor Hg1−xMnxTe // Infrared Phys. Technol. 36, p. 929-936 (1995).
https://doi.org/10.1016/1350-4495(95)00031-S
12. G.G. Tarasov, Yu.I. Mazur, J.W. Tomm et al., Optical diagnostics of quaternary narrow-gap semiconductors // Proc. SPIE 2113, p. 17-26 (1994).
https://doi.org/10.1117/12.191988
13. Yu.I. Mazur, G.G. Tarasov, V. Jashke et al., Excitonic magnetoluminescence enhancement in semimagnetic Hg1−x−yCdxMnyTe // Semicond. Sci. Technol. 11, p. 1291-1301 (1996).
https://doi.org/10.1088/0268-1242/11/9/009
14. I.N. Gorbatyuk, А.V. Markov, S.E. Ostapov, I.M. Rarenko, HgCdMnZnTe: a new alternative to HgCdTe // Fizika i tekhnika poluprovodnikov 38, No 12, p. 1414-1418 (2004) (in Russian).
https://doi.org/10.1134/1.1836053
15. I.N. Gorbatyuk, S.E. Ostapov, S.G. Dremlyuzhenko et al., Research on physical properties of HgCdMnZnTe as a new material in IR optoelectronics // Fizika i tekhnika poluprovodnikov 39, No 9, p. 1053-1058 (2005) (in Russian).
16. I.N. Gorbatyuk, S.E. Ostapov, V.V. Zhikharevich, Investigation of the physical properties of multicomponent solid solutions Hg1−x−y−zAxByCzTe // Semiconductor Physics, Quantum Electronics and Optoelectronics 8(1), p.31-36 (2005).
https://doi.org/10.15407/spqeo8.01.030
17. M.W. Scott, Energy gap in Hg1−xCdxTe by optical absorption // J. Appl. Phys. 40, No 10, p. 4077-4081 (1969).
https://doi.org/10.1063/1.1657147
18. V.L. Bonch-Bruyevich, S.G. Kalashnikov, Physics of semiconductors. Nauka, oscow 1990 (in Russian).
19. V.V. Bogoboyaschiy, The problem of practical determination of optical bandgap in narrow-gap Hg1−xCdxTe crystals // Kondensirovannye sredy i mezhfaznye granitsy 2, No 3, p. 223 - 228 (2000) (in Russian).
20. B. Riedley, Quantum processes in semiconductors. Mir, Moscow, 1986 (in Russian).