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Articles
Widely tunable narrow-linewidth lasers with booster amplification on silicon photonics
Publication:
Widely tunable narrow-linewidth lasers with booster amplification on silicon photonics
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Date
2025
Journal article
https://doi.org/10.1364/OE.561111
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APA
Chicago
Harvard
IEEE
Basic data
APA
Chicago
Harvard
IEEE
Author(s)
Liu, Yang
;
Chen, Ye
;
Bogaert, Laurens
;
Soltanian, Emad
;
Delli, Evangelia
;
Lepage, Guy
;
Verheyen, Peter
;
Van Campenhout, Joris
;
Morthier, Geert
;
Roelkens, Gunther
;
Zhang, Jing
Journal
OPTICS EXPRESS
Abstract
Achieving high-power, narrow-linewidth, and low-intensity-noise (RIN) widely tunable lasers on silicon photonics (SiPh) platforms remains a critical challenge for transformative photonic applications. In this work, we present the micro-transfer printing of double-ridge InP/InGaAs semiconductor optical amplifiers (SOAs) onto a silicon photonics platform to realize on-chip widely tunable lasers. The double-ridge SOA structure enables simultaneous control of laser cavity gain and laser output optical amplification. The resulting tunable laser exhibits a wide tuning range exceeding 51 nm and delivers a waveguide-coupled output power of 10 mW per wavelength. Additionally, the device achieves a narrow linewidth of 1.6 kHz and a low RIN of approximately −140 dB/Hz. These characteristics underscore the suitability of the device for demanding applications in wavelength-division multiplexing systems and photonic sensing. This approach demonstrates a viable pathway toward compact and high-performance laser-based photonic systems-on-chip. © 2025 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement
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Downloads
4
since deposited on 2025-06-10
Acq. date: 2026-02-24
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96
since deposited on 2025-06-10
8
last month
Acq. date: 2026-02-24
Citations