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◆ Optics letters2026-09-01

InGaAsN/GaAs quantum-well-based microlasers improved by PECVD SiO2 passivation.

Veronica Voitovich, Ivan Makhov, Ivan Melnichenko, Maxim Solodovnik, Natalia Kryzhanovskaya, Alexey Zhukov

原始摘要(英文原文)· Original abstract
The influence of cavity surface passivation with SiO2 coating deposited by the plasma-enhanced chemical vapor deposition technique is investigated for injection microdisk lasers with an InGaAsN/GaAs quantum well active region. The electroluminescence spectra of the microdisk lasers with cavity diameters ranging from 12 to 32 μm with and without sidewall surface passivation were studied for a wide range of injection currents. It is shown that surface passivation with silicon dioxide reduces threshold currents by a factor of 2-5 compared to non-passivated microlasers. Temperature stability of passivated microlaser operation is also investigated up to 90°C. The results achieved show that PECVD SiO2 passivation is an effective yet easy-to-implement method for improving the threshold characteristics applicable to InGaAsN-based microdisk laser resonators.
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InGaAsN/GaAs quantum-well-based microlasers improved by PECVD SiO2 passivation. — 科研速览 Science Skim