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Optimized Dual-Stokes Raman Laser for 1.1 µm Emission and Temperature Sensing

  • Jesus Alberto Coba-Ramos
  • , Lelio de la Cruz May*
  • , Angeles Yolanda Pages-Pacheco
  • , Efrain Mejia-Beltran
  • , Daniel Jauregui-Vazquez*
  • , Manuel May-Alarcon
  • , Rafael Sanchez-Lara
  • , Jose Alfredo Alvarez Chavez
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

This work experimentally validates an improved Raman fiber laser, developed through cascade core variation splicing of optical fibers and the integration of fiber Bragg gratings. A continuous-wave Yb-doped fiber laser was used as the pump source, delivering up to 10 W at 1064 nm. The first Stokes emission generates laser output centered at 1119 nm, while the second Stokes emission produces a lasing mode at 1179 nm. Fiber Bragg gratings control these emissions. Furthermore, both Stokes laser emissions can be tuned by applying temperature changes, achieving a 15.07 pm/°C sensitivity. The proposed laser presents a compact and practical solution for remote temperature sensing applications using fiber lasers.

Original languageEnglish
Article number470
JournalPhotonics
Volume12
Issue number5
DOIs
Publication statusPublished - May 2025

Keywords

  • Fiber Bragg grating
  • Raman fiber laser
  • Stokes emission
  • Temperature fiber laser sensor

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