Phase-sensitive optical time domain reflectometry (ΦOTDR) is a simple and effective tool that allows the distributed monitoring of vibrations along single-mode fibers. In this letter we study the effects of modulation instability (MI) in long-range ΦOTDR over conventional optical fibers. We demonstrate both theoretically and experimentally that MI can induce a position-dependent signal fading which leads to a nearly complete visibility loss in the interference signal recorded at certain positions and therefore to a sensitivity loss at these positions. While this effect is detrimental in the context of distributed vibration analysis using ΦOTDR, we also believe that the technique provides a clear and insightful way to evidence the Ferm...
Abstract: The influence of the laser frequency drift on the operation of phase-sensitive optical tim...
Multi-mode fiber (MMF) is used in a polarization-sensitive optical time domain reflectometer (OTDR) ...
Distributed Acoustic Sensing (DAS) is a technology with interesting features for real-time safety an...
Phase-sensitive optical time domain reflectometry (ΦOTDR) is a simple and effective tool that allows...
Phase-sensitive optical time-domain reflectometry (φOTDR) is a simple and effective tool allowing th...
Typical phase-sensitive optical time-domain reflectometry (ϕOTDR) schemes rely on the use of coheren...
We provide the first longitudinal characterization in phase and amplitude of the nonlinear stage of ...
We report a novel experimental setup to perform distributed characterization in intensity and phase ...
In this thesis, the work focuses on developing distributed optical fiber vibration sensors based on ...
Recently, a distributed fiber optic sensor named phase optical time domain reflectometer or phase-se...
The characteristics of interference fading in a phase sensitive optical time domain reflectometer (p...
Recently, the combination of pattern recognition technology and distributed fiber sensing systems ha...
Modulation instability is thoroughly investigated and a simple analytical model for its power critic...
This article deals with the possibility of employing phase sensitive OTDR (Optical Time Domain Refle...
Modulation instability is one of the most ubiquitous phenomena in physics. Here we investigate the p...
Abstract: The influence of the laser frequency drift on the operation of phase-sensitive optical tim...
Multi-mode fiber (MMF) is used in a polarization-sensitive optical time domain reflectometer (OTDR) ...
Distributed Acoustic Sensing (DAS) is a technology with interesting features for real-time safety an...
Phase-sensitive optical time domain reflectometry (ΦOTDR) is a simple and effective tool that allows...
Phase-sensitive optical time-domain reflectometry (φOTDR) is a simple and effective tool allowing th...
Typical phase-sensitive optical time-domain reflectometry (ϕOTDR) schemes rely on the use of coheren...
We provide the first longitudinal characterization in phase and amplitude of the nonlinear stage of ...
We report a novel experimental setup to perform distributed characterization in intensity and phase ...
In this thesis, the work focuses on developing distributed optical fiber vibration sensors based on ...
Recently, a distributed fiber optic sensor named phase optical time domain reflectometer or phase-se...
The characteristics of interference fading in a phase sensitive optical time domain reflectometer (p...
Recently, the combination of pattern recognition technology and distributed fiber sensing systems ha...
Modulation instability is thoroughly investigated and a simple analytical model for its power critic...
This article deals with the possibility of employing phase sensitive OTDR (Optical Time Domain Refle...
Modulation instability is one of the most ubiquitous phenomena in physics. Here we investigate the p...
Abstract: The influence of the laser frequency drift on the operation of phase-sensitive optical tim...
Multi-mode fiber (MMF) is used in a polarization-sensitive optical time domain reflectometer (OTDR) ...
Distributed Acoustic Sensing (DAS) is a technology with interesting features for real-time safety an...