Narrow‐Linewidth Continuous‐Wave Perovskite Nanolasers via Conformal DFB Gratings

ABSTRACT Integrating solution‐processed perovskite gain media into silicon photonic platforms is challenging because of the competition between precursor infiltration and crystallization. Here, by tuning the solvent extraction rate via controlled antisolvent volume, we synchronize the precursor infiltration and crystallization kinetics on DFB gratings, enabling complete trench filling and uniform conformal growth with few structural defects. This structural continuity supports stable Bragg feedback, yielding wavelength‐tunable lasing (543–554 nm, 2 nm step). Under pulsed pumping, the laser has a linewidth of 0.15 nm and a threshold of 15.8 µJ cm − 2 (Q ≈ 3600). Room‐temperature continuous‐wave lasing is also demonstrated with a threshold of 15 W cm − 2 (Q ≈ 1700). This solvent‐extraction‐controlled crystallization strategy provides a general path to determining the morphology of solution‐processed semiconductors directly on nanostructured substrates for on‐chip coherent light sources.

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Publication Details

Journal
Laser & Photonics Review
Published
2026-10-07
DOI
https://doi.org/10.1002/lpor.72002
Primary Topic
Perovskite Materials and Applications
Type
article
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article

Narrow‐Linewidth Continuous‐Wave Perovskite Nanolasers via Conformal DFB Gratings

Guohui Li, Rong Wen, Wenhui zhao, Kaibo Zheng et al.
Laser & Photonics Review
Perovskite Materials and Applications
article

Narrow‐Linewidth Continuous‐Wave Perovskite Nanolasers via Conformal DFB Gratings

Guohui Li, Rong Wen, Wenhui zhao, Kaibo Zheng, Yanjie Shao, Yanxia Cui, Zhibin Cheng
article en

Abstract

ABSTRACT Integrating solution‐processed perovskite gain media into silicon photonic platforms is challenging because of the competition between precursor infiltration and crystallization. Here, by tuning the solvent extraction rate via controlled antisolvent volume, we synchronize the precursor infiltration and crystallization kinetics on DFB gratings, enabling complete trench filling and uniform conformal growth with few structural defects. This structural continuity supports stable Bragg feedback, yielding wavelength‐tunable lasing (543–554 nm, 2 nm step). Under pulsed pumping, the laser has a linewidth of 0.15 nm and a threshold of 15.8 µJ cm − 2 (Q ≈ 3600). Room‐temperature continuous‐wave lasing is also demonstrated with a threshold of 15 W cm − 2 (Q ≈ 1700). This solvent‐extraction‐controlled crystallization strategy provides a general path to determining the morphology of solution‐processed semiconductors directly on nanostructured substrates for on‐chip coherent light sources.

Laser & Photonics Review
Lund University (SE), Harbin Institute of Technology (CN), NanoLund (SE), Taiyuan University of Technology (CN)
Openalex Percentile: Top 22%
Perovskite Materials and Applications
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Narrow‐Linewidth Continuous‐Wave Perovskite Nanolasers via Conformal DFB Gratings — Guohui Li, Rong Wen, et al. · Laser & Photonics Review (2026) | TGRS Research Map | TGRS