We propose a high-resolution optical time domain reflectometry (OTDR) based on an all-fiber supercontinuum source. The source simply consists of a laser with moderate power and a section of fiber which has a zero dispersion wavelength near the laser's central wavelength. Spectrum and time domain properties of the source are investigated, showing that the source has great capability in nonlinear optics, such as correlation OTDR. We analyze one of the key factors limiting the operational range of such an OTDR, i.e., sampling time. Finally, we experimentally demonstrate a correlation OTDR with 25km sensing range and 5.3cm spatial resolution, as a verification of theoretical analysis
The statistics of the phase dependent optical time-domain reflectometer have been analyzed. The opti...
Conventional chirped-pulse (CP) phase-sensitive optical time-domain reflectometry (CP φ-OTDR) allows...
Nonlinear interactions between different components of multiwavelength radiation are one of the main...
We propose a high-resolution optical time domain reflectometry (OTDR) based on an all-fiber supercon...
A high resolution optical time domain reflectometry (OTDR) based on an all-fiber chaotic source is d...
Abstract: We propose and experimentally demonstrate a simple approach to realize a phase-sensitive c...
Phase-sensitive optical time-domain reflectometry (ΦOTDR) is a well-established technique that provi...
A novel optical mechanism and scheme of Raman optical time domain reflection (ROTDR) for improving a...
Random number generation is a central component of modern information technology, with crucial appli...
Nonlinear physical systems are ubiquitous in nature - formation of sand dunes, currents occuring in ...
Coding technique has long been investigated as a solution to improve the signal-to-noise ratio (SNR)...
In this paper, the capabilities of time-expanded phase-sensitive optical time-domain reflectometry (...
This paper demonstrates a novel method of increasing the range of a 1.65µm optical time domain refle...
Phase-sensitive optical time-domain reflectometry (?OTDR) is a simple and effective tool allowing th...
4 pags., 6 figs.In this letter, the capabilities of time-expanded phase-sensitive optical time-domai...
The statistics of the phase dependent optical time-domain reflectometer have been analyzed. The opti...
Conventional chirped-pulse (CP) phase-sensitive optical time-domain reflectometry (CP φ-OTDR) allows...
Nonlinear interactions between different components of multiwavelength radiation are one of the main...
We propose a high-resolution optical time domain reflectometry (OTDR) based on an all-fiber supercon...
A high resolution optical time domain reflectometry (OTDR) based on an all-fiber chaotic source is d...
Abstract: We propose and experimentally demonstrate a simple approach to realize a phase-sensitive c...
Phase-sensitive optical time-domain reflectometry (ΦOTDR) is a well-established technique that provi...
A novel optical mechanism and scheme of Raman optical time domain reflection (ROTDR) for improving a...
Random number generation is a central component of modern information technology, with crucial appli...
Nonlinear physical systems are ubiquitous in nature - formation of sand dunes, currents occuring in ...
Coding technique has long been investigated as a solution to improve the signal-to-noise ratio (SNR)...
In this paper, the capabilities of time-expanded phase-sensitive optical time-domain reflectometry (...
This paper demonstrates a novel method of increasing the range of a 1.65µm optical time domain refle...
Phase-sensitive optical time-domain reflectometry (?OTDR) is a simple and effective tool allowing th...
4 pags., 6 figs.In this letter, the capabilities of time-expanded phase-sensitive optical time-domai...
The statistics of the phase dependent optical time-domain reflectometer have been analyzed. The opti...
Conventional chirped-pulse (CP) phase-sensitive optical time-domain reflectometry (CP φ-OTDR) allows...
Nonlinear interactions between different components of multiwavelength radiation are one of the main...