Wang, Hexing, Deng, Huiwen, Park, Jae-Seong, Zhang, Xuanchang, Lu, Cong, Kan, Haifeng, Zeng, Haotian, Wang, Yangqian, Gallagher, Dominic, Liu, Junhao, Lei, Danqi, Jia, Hui, Li, Wei, Smowton, Peter M. ORCID: https://orcid.org/0000-0002-9105-4842, Chen, Siming, Seeds, Alwyn, Liu, Huiyun and Tang, Mingchu
2026.
High-gain 11-layer InAs/GaAs quantum dot lasers with 25-nm GaAs spacers.
Device
4
(8)
, 101183.
10.1016/j.device.2026.101183
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Available under License Creative Commons Attribution. Download (4MB) |
Abstract
Stacking multiple InAs quantum dot (QD) layers is essential to achieve sufficient modal gain in InAs/GaAs QD lasers, yet the resulting strain accumulation necessitates thick spacers, degrading carrier transport and optical confinement. Here, we reduce the spacer thickness from 37.5 to 25 nm by optimizing the spacer growth temperature, thereby preserving optical and structural quality, as confirmed by photoluminescence and cross-sectional transmission electron microscopy. 11-layer InAs/GaAs QD lasers with thin spacers exhibit a low threshold current density of 178 A/cm2 at room temperature and sustain lasing up to 180°C, demonstrating that thinner spacers support robust thermal stability. Leveraging the increased volumetric dot density enabled by thinning spacers, ground-state lasing is observed in an ultra-short-cavity (200-μm) device, implying an estimated threshold modal gain above 60 cm−1. These results establish a practical route to high-gain, high-speed QD lasers for data-communication applications.
| Item Type: | Article |
|---|---|
| Date Type: | Publication |
| Status: | Published |
| Schools: | Schools > Physics and Astronomy |
| Publisher: | Elsevier BV |
| Date of First Compliant Deposit: | 22 June 2026 |
| Date of Acceptance: | 11 May 2026 |
| Last Modified: | 03 Sep 2026 11:43 |
| URI: | https://orca.cardiff.ac.uk/id/eprint/187675 |
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