Semiconductor Physics, Quantum Electronics & Optoelectronics. 2013. V. 16, N 1. P. 059-063.
DOI: https://doi.org/10.15407/spqeo16.01.059


References

1. G. Nimitz and B. Schlicht, Narrow-gap lead salts, in: R. Dornhaus, G. Nimitz and B. Schlicht (Eds.), Narrow-Gap Semiconductors. Springer, Berlin, 1985.
 
2. A. Rogalski, IV-VI Detectors, in: Infrared Photon Detectors, A. Rogalski (Ed.). SPIE Optical Engineering Press, Bellingham, 1995.
 
3. M. Rahim, M. Arnold, F. Felder, K. Behfar, and H. Zogg, Midinfrared lead-chalcogenide vertical external cavity surface emitting laser with 5 mm wavelength. Appl. Phys. Lett. 91(15), p. 151102-1 - 151102-3 (2007).
 
4. T.C. Harman, P.J. Taylor, M.P. Walsh, B.E. La Forge, Nanostructured thermoelectric materials. J. Electron. Mater., 34 (5), p. L19-L22 (2005).
https://doi.org/10.1007/s11664-005-0083-8
 
5. R. Triboulet and P. Siffert, CdTe and Related Compounds. Physics, Defects, Hetero- and Nanostructures, Crystal Growth Surfaces and Applications. Oxford, Elsevier, 2010.
 
6. K. Zanio, Cadmium telluride, in: R.K. Willardson and A.C. Beer (Eds.), Semiconductors and Semimetals, vol. 13. Academic Press, New York and London (1978).
 
7. R. Leitsmann, L.E. Ramos and F. Bechstedt, Structural properties of PbTe/CdTe interfaces from first principles. Phys. Rev. B, 74, p. 085309-1 - 085309-8 (2006).
 
8. R. Leitsmann and F. Bechstedt, Electronic-structure calculations for polar lattice-structure-mismatched interfaces PbTe/CdTe (100). Phys. Rev. B, 76, p. 125315-1 - 125315-11 (2007).
 
9. M. Bukala, P. Sankowski, R. Buczko and P. Kacman, Crystal and electronic structure of PbTe/CdTe nanostructures. Nanoscale Res. Lett. 6, p. 126 (2011).
https://doi.org/10.1186/1556-276X-6-126
 
10. J. Si, S. Jin, H. Zhang, P. Zhu, D. Qiu, H. Wu, Experimental determination of valence band offset at PbTe/CdTe(111) heterojunction interface by x-ray photoelectron spectroscopy. Appl. Phys. Lett. 93(20), p. 202101-1 - 202101-3 (2008).
 
11. C.F. Cai, H.Z. Wu, J.X. Si et al., Energy band alignment of PbTe/CdTe(111) interface determined by ultraviolet photoelectron spectra using synchrotron radiation. Chin. Phys. B, 19(7), p. 077301-1 - 077301-3 (2010).
 
12. A Lopez-Otero, Hot wall epitaxy. Thin Solid Films, 49 (1), p. 3-57 (1978).
https://doi.org/10.1016/0040-6090(78)90309-7
 
13. H. Clemens, E.J. Fantner, G. Bauer, Hot-wall epitaxy system for the growth of multilayer IV-VI compound heterostructures. Rev. Sci. Instrum. 54, p. 685-689 (1983).
https://doi.org/10.1063/1.1137454
 
14. M.A. Lampert, P. Mark, Current Injection in Solids. Academic Press, New York, 1970.
 
15. Madan Niraula, Toru Aoki, Yoichiro Nakanishi, and Yoshinori Hatanaka, Radical assisted metalorganic chemical vapor deposition of CgTe on GaAs and carrier transport mechanism in CdTe/n-GaAs heterojunction. J. Appl. Phys. 83(5), p. 2656-2661 (1998).
https://doi.org/10.1063/1.367028
 
16. A. Zoul, E. Klier, Space charge limited current in high resistivity CdTe crystals. Czech. J. Phys. 27(7), p. 789-796 (1977).
https://doi.org/10.1007/BF01589320
 
17. X. Mathew, J. Pantoja Enriquez, P.J. Sebastian, M. Pattabi, A. Sanchez-Juarez, J. Campos, J.C. McClure, V.P. Singh, Charge transport mechanism in a typical Au/CdTe Schottky diode. Solar Energy Mater. & Solar Cells, 63(4), p. 355-365 (2000).
https://doi.org/10.1016/S0927-0248(00)00055-6
 
18. A.M. Mancini, C. Manfredotti, C. De Blasi, G. Micocci and A.Tepore, Characterization of CdTe with photoelectronic techniques. Rev. Phys. Appl. 12(2), pp. 255-261 (1977).
https://doi.org/10.1051/rphysap:01977001202025500
 
19. M.G. Mahesha, V.B. Kasturi and G.K. Shivakumar, Characterization of thin film Al/p-CdTe Schottky diode. Turk. J. Phys. 32, p. 151-156 (2008).
 
20. A. Subbarayan, K. Natarajan S. Lalitha, R. Sathyamoorthy, S. Senthilarasu, Characterization of CdTe thin film – dependence of structural and optical properties on temperature and thickness. Solar Energy Mater. & Solar Cells, 82(1-2), p. 187-199 (2004).
https://doi.org/10.1016/j.solmat.2004.01.017
 
21. K. Mochizuki, K. Masumoto, I-V characteristics of CdTe single crystals. Mater. Lett. 4(5-7), p. 301-303 (1986).
https://doi.org/10.1016/0167-577X(86)90029-7
 
22. B.L. Sharma, R.P. Purohit, Semiconductor Heterojunctions. Pergamon Press, New York, 1974.