Half-Ring Microlasers Based on InGaAs Quantum Well-Dots with High Material Gain

Author:

Zubov Fedor1,Moiseev Eduard2ORCID,Maximov Mikhail1,Vorobyev Alexander1ORCID,Mozharov Alexey1ORCID,Shernyakov Yuri3,Kalyuzhnyy Nikolay3,Mintairov Sergey3,Kulagina Marina3,Dubrovskii Vladimir4,Kryzhanovskaya Natalia2ORCID,Zhukov Alexey2

Affiliation:

1. Center of Nanotechnology, Alferov University, St. Petersburg 194021, Russia

2. International Laboratory of Quantum Optoelectronics, HSE University, St. Petersburg 190008, Russia

3. Ioffe Institute, St. Petersburg 194021, Russia

4. Faculty of Physics, St. Petersburg State University, St. Petersburg 199034, Russia

Abstract

We report on half-ring lasers that are 100–200 µm in diameter and are fabricated by cleaving the initial full rings into halves. Characteristics of the half-ring and half-disk lasers fabricated from the same wafer are compared. The active area of the microlasers is based on the quantum heterostructures of mixed (0D/2D) dimensionality, referred to as quantum well-dots with very high material gain. Half-ring lasers show directional light emission and single-mode lasing near the threshold. A maximal continuous-wave output power of 76 mW is achieved for a half-ring that is 200 µm in diameter. Half-rings demonstrate better wall-plug efficiency as compared to half-disks. Lasing in pulse mode is observed up to 140 °C, the characteristic temperature is 100–125 K, depending on the half-ring size. P-side down bonding onto Si-board significantly improves power and temperature characteristics. In CW mode, lasing is maintained up to 97 °C, limited by active-area overheating.

Funder

Ministry of Science and Higher Education of the Russian Federation

Basic Research Program of the National Research University Higher School of Economics

research grant of St. Petersburg State University

Publisher

MDPI AG

Subject

Radiology, Nuclear Medicine and imaging,Instrumentation,Atomic and Molecular Physics, and Optics

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