Abstract:
The results of experiments on the fabrication (by molecular-beam epitaxy) and investigation of the heterostructures of a two-frequency quantum-cascade laser produced on the basis of a heteropair of In0.530.53Ga0.470.47As/Al0.480.48In0.520.52As solid solutions on an InP substrate are presented. The heterostructures contained quantum cascades emitting at a wavelength of 9.6 μμm and cascades emitting at a wavelength of 7.6 μμm. The high structural quality of the fabricated heterostructures is shown. The spontaneous emission and lasing spectra are investigated and the multimodal laser generation of stripe lasers at a wavelength of 7.6 μμm is demonstrated.
Citation:
A. V. Babichev, A. G. Gladyshev, A. S. Kurochkin, E. S. Kolodeznyi, V. N. Nevedomskiy, L. Ya. Karachinsky, I. I. Novikov, A. N. Sofronov, A. Yu. Egorov, “Spontaneous emission and lasing of a two-wavelength quantum-cascade laser”, Fizika i Tekhnika Poluprovodnikov, 53:3 (2019), 365–369; Semiconductors, 53:3 (2019), 345–349
\Bibitem{BabGlaKur19}
\by A.~V.~Babichev, A.~G.~Gladyshev, A.~S.~Kurochkin, E.~S.~Kolodeznyi, V.~N.~Nevedomskiy, L.~Ya.~Karachinsky, I.~I.~Novikov, A.~N.~Sofronov, A.~Yu.~Egorov
\paper Spontaneous emission and lasing of a two-wavelength quantum-cascade laser
\jour Fizika i Tekhnika Poluprovodnikov
\yr 2019
\vol 53
\issue 3
\pages 365--369
\mathnet{http://mi.mathnet.ru/phts5567}
\crossref{https://doi.org/10.21883/FTP.2019.03.47289.9015}
\elib{https://elibrary.ru/item.asp?id=37477130}
\transl
\jour Semiconductors
\yr 2019
\vol 53
\issue 3
\pages 345--349
\crossref{https://doi.org/10.1134/S1063782619030023}
Linking options:
https://www.mathnet.ru/eng/phts5567
https://www.mathnet.ru/eng/phts/v53/i3/p365
This publication is cited in the following 1 articles:
A. V. Babichev, A. G. Gladyshev, V. V. Dyudelev, L. Ya. Karachinsky, I. I. Novikov, D. V. Denisov, S. O. Slipchenko, A. V. Lyutetskiy, N. A. Pikhtin, G. S. Sokolovskii, A. Yu. Egorov, “Heterostructures of quantum-cascade laser for the spectral range of 4.6 μμm for obtaining a continuous-wave lasing mode”, Tech. Phys. Lett., 46:5 (2020), 442–445