Energy transfer between the interacting waves in a distributed Brillouin sensor can result in a distorted measurement of the local Brillouin gain spectrum, leading to systematic errors. It is demonstrated that this depletion effect can be precisely modelled. This has been validated by experimental tests in an excellent quantitative agreement. Strict guidelines can be enunciated from the model to make the impact of depletion negligible, for any type and any length of fiber
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
Energy transfer between the interacting waves in a distributed Brillouin sensor can result in a dist...
Energy transfer between the interacting waves in a distributed Brillouin sensor can result in a dist...
Systematic errors induced by distortions in the pump pulse of conventional Brillouin distributed fi...
Systematic errors induced by distortions in the pump pulse of conventional Brillouin distributed fi...
We demonstrate a simple technique to provide conventional Brillouin optical time-domain analysis sen...
We demonstrate the extension of the measurement range of Brillouin optical time-domain analysis (BO...
We demonstrate the extension of the measurement range of Brillouin optical time-domain analysis (BO...
We demonstrate a simple technique to provide conventional Brillouin optical time-domain analysis sen...
We demonstrate, for the first time to our knowledge, a Brillouin optical time domain analysis sensor...
We present a novel technique for Brillouin optical time domain analysis (BOTDA) sensors that simulta...
We demonstrate a Brillouin optical time domain analysis sensor based on a phase modulated probe wave...
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...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
Energy transfer between the interacting waves in a distributed Brillouin sensor can result in a dist...
Energy transfer between the interacting waves in a distributed Brillouin sensor can result in a dist...
Systematic errors induced by distortions in the pump pulse of conventional Brillouin distributed fi...
Systematic errors induced by distortions in the pump pulse of conventional Brillouin distributed fi...
We demonstrate a simple technique to provide conventional Brillouin optical time-domain analysis sen...
We demonstrate the extension of the measurement range of Brillouin optical time-domain analysis (BO...
We demonstrate the extension of the measurement range of Brillouin optical time-domain analysis (BO...
We demonstrate a simple technique to provide conventional Brillouin optical time-domain analysis sen...
We demonstrate, for the first time to our knowledge, a Brillouin optical time domain analysis sensor...
We present a novel technique for Brillouin optical time domain analysis (BOTDA) sensors that simulta...
We demonstrate a Brillouin optical time domain analysis sensor based on a phase modulated probe wave...
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...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...
According to recent models, non-local effects in dual-probesideband Brillouin Optical Time Domain A...