RESEARCH OF SPECTRAL CHARACTERISTICS OF IR LASERS OF SEMICONDUCTORS AIIBVI DOPED WITH Fe2+ , Co2+ AND Ni2+ IONS
https://doi.org/10.15518/isjaee.2015.10-11.014
Abstract
The article presents the research of spectral properties of Fe2+, Co2+ and Ni2+ ion energy structure in semiconductor materials АIIВVI ( ZnO, ZnS, ZnSe, ZnTe, CdO, CdS, CdSe, CdTe) and the ratio of these spectral structures of absorption and luminescence transitions with band gap of materials АIIВVI. This article evaluates the possibility of obtaining laser action on these materials in 1.5–3 microns range, as optic fiber data lines have a transparency window in that range. The results are valuable for various other applications of tunable semiconductor lasers.
About the Authors
E. F. KustovRussian Federation
DSc (physics and mathematics), professor of FTEMK, MPEI
I. S. Kurchatov
Russian Federation
postgraduate of MPEI, engineer of NITG
References
1. Gogoleva N.G. Primenenie lazerov v nauke, tehnike i medicine. SPbGÈTU «LÈTI» Publ., 2007 (in Russ.).
2. Baranowski J.M., Allen J.W., Pearson G.L. Crystal-field spectra of 3dn impurities in II-VI and III-V compound semiconductors. Physical Review, 1967, vol. 160, pp. 627–632 (in Eng.).
3. DeLoach L.D., Page R.H., Wilke G.D., Payne S.A., Krupke W.F. Transition metal-doped zinc chalcogenides: spectroscopy and laser demonstration of a new class of gain media. IEEE J. Quantum Electron, 1996, vol. 32, pp. 885–895 (in Eng.).
4. Kustov E.F. Orbital’naâ sistema struktur nanora-zmernoj dispersnosti. Izvestiâ akademii inženernyh nauk im. A.M. Prohorova, 2013, no. 1, pp. 92–124 (in Russ.).
5. Kustov E.F., Novotortsev V.M., Kustov M.E. Or-bital Structure of Vibrations of Nanoparticles, Clusters, and Coordination Polyhedra. Russian Journal of Inor-ganic Chemistry, 2013, vol. 58, no. 14, pp. 1624–1646 (in Eng.).
6. Kustov E.F., Basieva I.T. Matricy ènergii i sil os-cillâtorov èlektro-dipol’nyh perehodov v ionah 3dn(n=2,3,4,6,7,8) konfiguracij (Cr2+, Co2+, Fe2+, Ni2+) v kristalličeskih polâh lûboj simmetrii. Reestr bazy dannyh no. 2012621086 ot 19.10.2012. Available at: http://www1.fips.ru (in Russ.).
7. Kustov E.F., Basieva I.T. Rasčet optičeskih spek-trov ionov Cr2+, Cr3+, Cr4+, Co2+, Co3+, Fe2+, Ni2+) v po-luprovodnikah AIIBVI, AIIIBV. Reestr programm dlâ ÈVM no. 2012619507 ot 19.10.2012. Available at: http://www1.fips.ru (in Russ.).
8. Kurchatov I.S., Bundyuk A.V., Basieva I.T., Kustov D.M. Issledovanie materialov dlâ IK lazerov na osnove poluprovodnikov AIIBVI i AIIIBV legirovannyh ionami Co2+. Vestnik CGTU, 2014, no. 2, pp. 35–42 (in Russ.).
9. Kustov D.M., Bundyuk A.V., Goncharov E.O., Kurchatov I.S. IK lazery na poluprovodnikah AIIBVI i AIIIBV s ionami Co2+. Izvestiâ Akademii inženernyh nauk im. Prohorova, 2014, no. 2, pp. 49–52 (in Russ.).
10. Kurchatov I.S., Kustov D.M. Issledovanie mate-rialov dlja IK lazerov na osnove poluprovodnikov AIIBVI legirovannyh ionami Ni2+ // Vestnik CGTU. 2015. no 2, pp. 32–38 (in Russ.).
11. Dreyhsig J., Litzenburger B. Nature of optical transitions in the charge-transfer region of ZnS:Co and ZnSe:Co. Phys. Rev. B, 1996, vol. 54, pp. 10516–10524 (in Eng.).
12. Kustov E.F., Novotorcev V.M. Magnetohimiâ molekulârnyh struktur. Moscow: URSS Crosand Publ., 2014 (in Russ.).
Review
For citations:
Kustov E.F., Kurchatov I.S. RESEARCH OF SPECTRAL CHARACTERISTICS OF IR LASERS OF SEMICONDUCTORS AIIBVI DOPED WITH Fe2+ , Co2+ AND Ni2+ IONS. Alternative Energy and Ecology (ISJAEE). 2015;(10-11):150-166. (In Russ.) https://doi.org/10.15518/isjaee.2015.10-11.014