Voir la notice de l'article provenant de la source Math-Net.Ru
@article{PFMT_2013_1_a5, author = {I. N. Tsyrelchuk and V. V. Khoroshko and V. F. Gremenok and V. A. Mishuto}, title = {The optical properties of thin films of solid solutions $\mathrm{CU_XIn_XZn_{2-2X}Se_2}$, obtained by a two-stage selenization}, journal = {Problemy fiziki, matematiki i tehniki}, pages = {33--36}, publisher = {mathdoc}, number = {1}, year = {2013}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/PFMT_2013_1_a5/} }
TY - JOUR AU - I. N. Tsyrelchuk AU - V. V. Khoroshko AU - V. F. Gremenok AU - V. A. Mishuto TI - The optical properties of thin films of solid solutions $\mathrm{CU_XIn_XZn_{2-2X}Se_2}$, obtained by a two-stage selenization JO - Problemy fiziki, matematiki i tehniki PY - 2013 SP - 33 EP - 36 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/PFMT_2013_1_a5/ LA - ru ID - PFMT_2013_1_a5 ER -
%0 Journal Article %A I. N. Tsyrelchuk %A V. V. Khoroshko %A V. F. Gremenok %A V. A. Mishuto %T The optical properties of thin films of solid solutions $\mathrm{CU_XIn_XZn_{2-2X}Se_2}$, obtained by a two-stage selenization %J Problemy fiziki, matematiki i tehniki %D 2013 %P 33-36 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/PFMT_2013_1_a5/ %G ru %F PFMT_2013_1_a5
I. N. Tsyrelchuk; V. V. Khoroshko; V. F. Gremenok; V. A. Mishuto. The optical properties of thin films of solid solutions $\mathrm{CU_XIn_XZn_{2-2X}Se_2}$, obtained by a two-stage selenization. Problemy fiziki, matematiki i tehniki, no. 1 (2013), pp. 33-36. http://geodesic.mathdoc.fr/item/PFMT_2013_1_a5/
[1] J. S. Ward et al., “A 21.5% Efficient $\mathrm{Cu(In,Ga)Se}_2$ Thin-Film Concentrator Solar Cell”, Prog. Photovolt. Res. Appl., 10 (2002), 41–46
[2] V. Yu. Rud' et. al., “Photosensitivity of Thin-Film Stuctures Based on $\mathrm{(CuInSe_2)_X(2ZnSe)_{1-X}}$ Solid Solutions”, Semiconductors, 34:5 (2000), 558–562
[3] V. Yu. Rud' et al., “Formation and Investigation of Photosensitive Structures Based on Laser-Deposited $\mathrm{CuInSe_2\text{-}2ZnSe}$ Films”, Phys. Stat. Sol. (a), 188:3 (2001), 1077–1085
[4] S. Nishiwaki et al., “Preparation of $\mathrm{Zn}$ doped $\mathrm{Cu(In,Ga)Se_2}$ thin films by physical vapor deposition for solar cells”, Solar Energy Materials Solar Cells, 77 (2003), 359–368
[5] C. A. Durante et al., “Lattice Parameters and Optical Energy Gap of Pure and Doped $\mathrm{(CuInSe_2)_X(ZnSe)_{1-X}}$”, Cryst. Res. Technol., 31:2, Special Issue (1996), 241–246
[6] V. Yu. Rud i dr., “Fotoelektricheskie svoistva poverkhnostno barernykh struktur na osnove plenok $\mathrm{Zn_{2-2X}Cu_XIn_XSe_2}$, poluchennykh selenizatsiei”, Fizika i Tekhnika Poluprovodnikov, 39:9 (2005), 1070–1074
[7] L. L. Kazmerski, “Photovoltaics: a review of cell and module technologies”, Renewable and sustainable energy reviews, 1:1–2 (1997), 71–170
[8] U. Rau, H. W. Schock, “Properties of $\mathrm{Cu(In,Ga)Se_2}$ heterojunction solar cells — recent achievements, current understanding, and future challenges”, Appl. Phys. A, 69:131–147 (1999), 32–147
[9] U. Rau, H. W. Schock, “$\mathrm{Cu(In,Ga)Se_2}$ Sollar Cells”, Series of Photoconversion of Solar Energy, 1 (2001), 277–345
[10] T. M. Kouts (red.), Sovremennye problemy poluprovodnikovoi fotoenergetiki, Mir, M., 1988, 306 pp.
[11] V. A. Ivanov, N. N. Koren, “Ustanovka dlya vozbuzhdeniya katodolyuminestsentsii poluprovodnikov”, PTE, 1981, no. 6, 161–163 | MR
[12] Zh. Pankov, Opticheskie protsessy v poluprovodnikakh, Mir, M., 1973, 455 pp.
[13] E. I. Rogacheva, “Nonstoichiometry in the I-III-VI${}_2$ compounds”, Inst. Phys. Conf. Ser., 1998, no. 152, 1–14
[14] V. P. Gribkovskii, Teoriya pogloscheniya i ispuskaniya sveta v poluprovodnikakh, Nauka i tekhnika, Mn., 1975, 464 pp.