We evaluate the Brillouin frequency shift (BFS) determination error when utilizing the Brillouin phase spectrum (BPS) instead of the Brillouin gain spectrum (BGS) in BOTDA systems. Systems based on the BPS perform the determination of the BFS through a linear fit around the zero de-phase frequency region. An analytical expression of the error obtained in the BFS determination as a function of the different experimental parameters is provided and experimentally validated. The experimental results show a good agreement with the theoretical predictions as a function of the number of sampling points, signal-to-noise ratio (SNR) and Brillouin spectral linewidth. For an equal SNR and linewidth, the phase response only provides a better BFS estima...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
In this Letter, we present and demonstrate a novel technique for distributed measurements in Brillou...
We demonstrate a BOTDA sensor based on the use of the Brillouin phase shift that performs measuremen...
We evaluate the Brillouin frequency shift (BFS) determination error when utilizing the Brillouin ph...
We evaluate the Brillouin frequency shift (BFS) determination error when using the Brillouin phase s...
We present a novel technique for Brillouin optical time domain analysis (BOTDA) sensors that simulta...
The intricate relationships linking signal-to-noise ratio and Brillouin frequency shift uncertainty ...
We report on the effects of large pump pulse powers on Brillouin optical time-domain analysis (BOTDA...
The phase shift feature of stimulated Brillouin scattering is rarely used for the development of sen...
The performance of post-processing techniques carried out on the Brillouin gain spectrum to estimate...
We demonstrate a novel dynamic BOTDA sensor based, for the first time to our knowledge, on the use o...
We report on the effects of large pump pulse powers on Brillouin optical time-domain analysis (BOTDA...
We demonstrate a novel dynamic BOTDA sensor based, for the first time to our knowledge, on the use o...
We demonstrate a Brillouin optical time domain analysis sensor based on a phase modulated probe wave...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
In this Letter, we present and demonstrate a novel technique for distributed measurements in Brillou...
We demonstrate a BOTDA sensor based on the use of the Brillouin phase shift that performs measuremen...
We evaluate the Brillouin frequency shift (BFS) determination error when utilizing the Brillouin ph...
We evaluate the Brillouin frequency shift (BFS) determination error when using the Brillouin phase s...
We present a novel technique for Brillouin optical time domain analysis (BOTDA) sensors that simulta...
The intricate relationships linking signal-to-noise ratio and Brillouin frequency shift uncertainty ...
We report on the effects of large pump pulse powers on Brillouin optical time-domain analysis (BOTDA...
The phase shift feature of stimulated Brillouin scattering is rarely used for the development of sen...
The performance of post-processing techniques carried out on the Brillouin gain spectrum to estimate...
We demonstrate a novel dynamic BOTDA sensor based, for the first time to our knowledge, on the use o...
We report on the effects of large pump pulse powers on Brillouin optical time-domain analysis (BOTDA...
We demonstrate a novel dynamic BOTDA sensor based, for the first time to our knowledge, on the use o...
We demonstrate a Brillouin optical time domain analysis sensor based on a phase modulated probe wave...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
In this Letter, we present and demonstrate a novel technique for distributed measurements in Brillou...
We demonstrate a BOTDA sensor based on the use of the Brillouin phase shift that performs measuremen...