We present a low-noise distributed acoustic sensor using enhanced backscattering fiber with a series of localized reflectors. The point reflectors were inscribed in a standard telecom fiber in a fully automated system by focusing an ultra-fast laser through the fiber cladding. The inscribed reflectors provided a reflectance of −53 dB, significantly higher than the Rayleigh backscattering level of −70 dB/m, despite adding only 0.01 dB of loss per 100 reflection points. We constructed a coherent φ-OTDR system using a double-pulse architecture to probe the enhanced backscattering fiber. Using this system, we found that the point reflectors enabled an average phase noise of −91 dB (re rad2/Hz), 20 dB lower than sensors formed using Rayleigh bac...
Distributed Acoustic Sensing (DAS) is a ubiquitous technique which enables concurrent, real-time mea...
A distributed optical fiber dynamic strain sensor also known as a distributed acoustic sensor (DAS) ...
A high performance optical fiber, fabricated using femtosecond micro-machining, for distributed Rayl...
In this work, a distributed acoustic sensor (DAS) with 10-cm spatial resolution is demonstrated. Suc...
In this study, a distributed acoustic sensor (DAS) was numerically modeled based on the non-ideal op...
In this study, a distributed acoustic sensor (DAS) was numerically modeled based on the non-ideal op...
In this Letter, a distributed acoustic sensor (DAS) with a sensing range in excess of 150 km is repo...
In this Letter, we present an enhanced bandwidth distributed acoustic sensor (DAS) that uses a frequ...
Distributed acoustic sensing (DAS) using coherent Rayleigh backscattering in an optical fiber has be...
Distributed optical fiber sensing is a thriving research field that is finding practical application...
Fiber-distributed optical fiber acoustic sensor (DAS) is generally used in distributed long-distance...
The data set provided represents the data plotted on the figures on the journal paper titled "1...
Abstract: Distributed fibre sensors based on the frequency-domain analysis of Rayleigh backscattered...
Distributed vibration sensing based on phase-sensitive optical time domain reflectometry ( ϕ -OT...
The interrogation, via optical, fiber, of fiber Fabre Perot interferometers using laser based radio ...
Distributed Acoustic Sensing (DAS) is a ubiquitous technique which enables concurrent, real-time mea...
A distributed optical fiber dynamic strain sensor also known as a distributed acoustic sensor (DAS) ...
A high performance optical fiber, fabricated using femtosecond micro-machining, for distributed Rayl...
In this work, a distributed acoustic sensor (DAS) with 10-cm spatial resolution is demonstrated. Suc...
In this study, a distributed acoustic sensor (DAS) was numerically modeled based on the non-ideal op...
In this study, a distributed acoustic sensor (DAS) was numerically modeled based on the non-ideal op...
In this Letter, a distributed acoustic sensor (DAS) with a sensing range in excess of 150 km is repo...
In this Letter, we present an enhanced bandwidth distributed acoustic sensor (DAS) that uses a frequ...
Distributed acoustic sensing (DAS) using coherent Rayleigh backscattering in an optical fiber has be...
Distributed optical fiber sensing is a thriving research field that is finding practical application...
Fiber-distributed optical fiber acoustic sensor (DAS) is generally used in distributed long-distance...
The data set provided represents the data plotted on the figures on the journal paper titled "1...
Abstract: Distributed fibre sensors based on the frequency-domain analysis of Rayleigh backscattered...
Distributed vibration sensing based on phase-sensitive optical time domain reflectometry ( ϕ -OT...
The interrogation, via optical, fiber, of fiber Fabre Perot interferometers using laser based radio ...
Distributed Acoustic Sensing (DAS) is a ubiquitous technique which enables concurrent, real-time mea...
A distributed optical fiber dynamic strain sensor also known as a distributed acoustic sensor (DAS) ...
A high performance optical fiber, fabricated using femtosecond micro-machining, for distributed Rayl...