Affiliation:
1. Weizmann Institute of Science
2. The Applied Physics Division, Soreq NRC
3. OFS
Abstract
Propagation in the cladding modes of standard optical fibers enables
the sensing of chemicals outside the fiber boundary, where light in
the single core mode cannot reach. Coupling to the cladding modes
typically relies on the inscription of permanent gratings, which
restricts the operation of the sensors to point measurements only. In
addition, most applications rely on bare, uncoated fibers, which are
difficult to deploy outside the research laboratory. In this work, we
report the spatially distributed analysis of cladding mode spectra in
a standard, off-the-shelf coated fiber. The inscription of the
gratings, removal of the coating, or other structural modifications
are not required. Coupling is based on Brillouin dynamic gratings: Two
optical pump fields stimulate an acoustic wave, which couples a probe
field to a counter-propagating cladding mode. Spatial mapping is
obtained through time-of-flight analysis: pulsed modulation of one
pump wave and the monitoring of the output probe power as a function
of time. All fields are launched and detected only in the core mode.
The coupling spectrum is sensitive to local changes in the refractive
index of the coating layer, to the third decimal point. The spatial
resolution is one meter. The demonstrated range is a few meters, and
is scalable to hundreds of meters. The technique is used to detect and
monitor the local immersion of a fiber section in acetone. The results
establish a practical method for spatially distributed fiber optic
chemical sensors.
Subject
Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials
Cited by
5 articles.
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1. Tensor characteristics of forward Brillouin sensors in bare and coated fibers;APL Photonics;2023-12-01
2. Forward Brillouin Scattering Fiber Sensors;2023 Asia Communications and Photonics Conference/2023 International Photonics and Optoelectronics Meetings (ACP/POEM);2023-11-04
3. Opto-mechanical fiber sensing with optical and acoustic cladding modes;APL Photonics;2023-07-01
4. Inter-Vortex Forward Brillouin Scattering by Chiral Phonons;2023 Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference (CLEO/Europe-EQEC);2023-06-26
5. Tensor Attributes of Forward Brillouin Fiber Sensors;28th International Conference on Optical Fiber Sensors;2023