RUS  ENG
Full version
JOURNALS // Fizika i Tekhnika Poluprovodnikov // Archive

Fizika i Tekhnika Poluprovodnikov, 2017 Volume 51, Issue 12, Pages 1616–1620 (Mi phts5963)

This article is cited in 7 papers

XXI International Symposium ''Nanophysics And Nanoelectronics'', Nizhny Novgorod, March 13-16, 2017

Investigation of HgCdTe waveguide structures with quantum wells for long-wavelength stimulated emission

V. V. Rumyantsevab, A. M. Kadykova, M. A. Fadeeva, A. A. Dubinovab, V. V. Utochkinab, N. N. Mikhailovcd, S. A. Dvoretskiic, S. V. Morozovba, V. I. Gavrilenkoba

a Institute for Physics of Microstructures, Russian Academy of Sciences, Nizhnii Novgorod
b Lobachevsky State University of Nizhny Novgorod
c Institute of Semiconductor Physics, Siberian Branch of Russian Academy of Sciences, Novosibirsk
d Novosibirsk State University

Abstract: The photoluminescence and stimulated emission during interband transitions in quantum wells based on HgCdTe placed in an insulator waveguide based on a wide-gap CdHgTe alloy are studied. Heterostructures with quantum wells based on HgCdTe are of interest for the development of long-wavelength lasers in the range of 25–60 $\mu$m, which is currently unattainable for quantum-cascade lasers. Optimal designs of quantum wells for attainment of long-wavelength stimulated emission under optical pumping are discussed. It is shown that narrow quantum wells from pure HgTe appear to be more promising for long-wavelength lasers in comparison with wide (potential) wells from the alloy due to the suppression of Auger recombination. It is demonstrated that molecular-beam epitaxy makes it possible to obtain structures for the localization of radiation with a wavelength of up to 25 $\mu$m at a high growth rate. Stimulated emission is obtained for wavelengths of 14–6 $\mu$m with a threshold pump intensity in the range of 100–500 W/cm$^2$ at 20 K.

Received: 05.06.2017
Accepted: 15.06.2017

DOI: 10.21883/FTP.2017.12.45174.37


 English version:
Semiconductors, 2017, 51:12, 1557–1561

Bibliographic databases:


© Steklov Math. Inst. of RAS, 2025