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September 25, 2026
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Lasing of Quantum-Dot Micropillar Lasers Under Elevated Temperatures

IEEE Journal on Selected Topics in Quantum Electronics. 2025. Vol. 31. No. 5. Article 1900208.
Babichev A., Makhov I., Kryzhanovskaya N., Blokhin A., Zadiranov Y., Salii Y., Kulagina M., Bobrov M., Vasil'ev A., Blokhin S., Maleev N., Tchernycheva M., Karachinsky L., Novikov I., Egorov A.

A comprehensive numerical modelling of microcavity parameters for micropillar lasers with optical pumping was presented. The structure with a hybrid dielectric-semiconductor top mirror has a significantly higher calculated quality-factor (∼65000 for 5 μm pillar) due to better vertical mode confinement. The minimum laser threshold (∼370 μW for 5 μm pillar) coincided with a temperature of 130 K, which is close to zero gain to cavity detuning. Lasing up to 220 K was demonstrated with a laser threshold of about 2.2 mW.

Research target: Physics Nanotechnologies
Language: English
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Keywords: quantum dotквантовые точкираспределенный брэгговский отражательdistributed Bragg reflectorsfundamental vertical modeвертикальная мода
Publication based on the results of:
Study of disk microlasers and photonic integrated circuits for optical switching and sensing elements (2025)
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