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Pisma v Zhurnal Tekhnicheskoi Fiziki, 2016 Volume 42, Issue 20, Pages 57–65 (Mi pjtf6281)

This article is cited in 5 papers

A study of distributed dielectric Bragg reflectors for vertically emitting lasers of the near-IR range

S. A. Blokhina, M. A. Bobrova, A. G. Kuz'menkovab, A. A. Blokhina, A. P. Vasil'evab, Yu. A. Gusevaa, M. M. Kulaginaa, I. O. Karpovskiiac, Yu. M. Zadiranova, S. I. Troshkova, N. D. Prasolovda, P. N. Brunkovda, V. S. Levitskiie, V. Lisakad, N. A. Maleeva, V. M. Ustinovab

a Ioffe Institute, St. Petersburg
b Submicron Heterostructures for Microelectronics Research and Engineering Center, Russian Academy of Sciences, St. Petersburg
c Saint Petersburg Electrotechnical University
d St. Petersburg National Research University of Information Technologies, Mechanics and Optics
e R&D Center TFTE, St.-Petersburg

Abstract: Studies aimed at optimization of the design of a dielectric distributed Bragg reflector (DBR) produced by the reactive magnetron sputtering method for applications in near-IR vertical-cavity surface-emitting lasers with intracavity contacts (ICC-VCSELs) are carried out. It is shown that the reflectivity of the dielectric DBRs based on SiO$_{2}$/TiO$_{2}$ decreases due to the polycrystalline structure of the TiO$_2$ layers, which causes diffusive scattering of light. In contrast, amorphous Ta$_{2}$O$_{5}$ layers is characterized by a low surface roughness and low fluctuation in the refractive index. Single-mode ICC-VCSELs in the 980-nm spectral range with dielectric DBR based on SiO$_{2}$/Ta$_{2}$O$_{5}$ with a threshold current less than 0.27 mA, electric resistance of less than 200 $\Omega$, and differential efficiency of more than 0.8 W/A are demonstrated.

Received: 07.06.2016


 English version:
Technical Physics Letters, 2016, 42:10, 1049–1053

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