Compact C-band random fiber laser with localized feedback from a graphene/TiO2 composite droplet.

-only controls, the composite yields denser random lasing peaks, stronger spectral modulation, and higher slope efficiency. The RFL shows an estimated lasing threshold of 59 mW and an optical signal-to-noise ratio of 26.81 dB at 189 mW. Diameter-dependent performance is nonmonotonic; among the tested diameters, the 7.5 mm droplet provides the strongest spectral concentration and background suppression and the lowest measured low-frequency relative intensity noise (-76.61 dB/Hz at 122 mW).

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Publication Details

Journal
PubMed
Published
2026-09-15
DOI
https://doi.org/10.1364/ol.611524
Primary Topic
Random lasers and scattering media
Type
article
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article

Compact C-band random fiber laser with localized feedback from a graphene/TiO2 composite droplet.

Xingpeng Fei, Shaode Li, Yunhui Dong, Wei He
PubMed
Random lasers and scattering media
article

Compact C-band random fiber laser with localized feedback from a graphene/TiO2 composite droplet.

Xingpeng Fei, Shaode Li, Yunhui Dong, Wei He
article en

Abstract

-only controls, the composite yields denser random lasing peaks, stronger spectral modulation, and higher slope efficiency. The RFL shows an estimated lasing threshold of 59 mW and an optical signal-to-noise ratio of 26.81 dB at 189 mW. Diameter-dependent performance is nonmonotonic; among the tested diameters, the 7.5 mm droplet provides the strongest spectral concentration and background suppression and the lowest measured low-frequency relative intensity noise (-76.61 dB/Hz at 122 mW).

PubMedVol. 51(18)
Openalex Percentile: Top 19%
Random lasers and scattering media
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Compact C-band random fiber laser with localized feedback from a graphene/TiO2 composite droplet. — Xingpeng Fei, Shaode Li, et al. · PubMed (2026) | TGRS Research Map | TGRS