We experimentally characterize the characteristics of Rayleigh backscattering arising in few-mode fiber (FMF) using a mode selective all-fiber photonic lantern whose mode transfer matrix is measured through an easy implementation of back-reflection configuration
We use bidirectional OTDR technique to measure effective areas of two LP modes at four discrete wave...
We experimentally demonstrate 3×10 Gb/s mode group-multiplexed transmission with direction detection...
International audienceThe evolution of the light intensity along an optical waveguide is evaluated b...
We experimentally characterize the characteristics of Rayleigh backscattering arising in few-mode fi...
We experimentally characterize the mode dependent characteristics of Rayleigh backscattering (RB) ar...
We measure inter-modal Rayleigh backscattering in few-mode optical fibers and compare the experiment...
Low-loss all-fiber photonic lantern (PL) capable of selectively exciting the first six fiber modes o...
The extremely low loss of silica fibers has enabled the telecommunication revolution, but single-mod...
Low-loss all-fiber mode selective photonic-lanterns capable of exciting six spatial fiber modes (4 L...
Low-loss all-fiber mode selective photonic-lanterns capable of exciting six spatial fiber modes (4 L...
We propose and experimentally demonstrate a simple method for characterizing the power transfer matr...
We present a novel method to characterize the modal birefringence in a few-mode fiber (FMF), based o...
The ratio of the backscattered power to the input pulse energy is measured in single-mode optical fi...
We experimentally demonstrate a transverse mode-selective fiber laser using a photonic lantern. The ...
A new theory of backscattering in single-mode fibers is presented. It allows backscatter waveforms t...
We use bidirectional OTDR technique to measure effective areas of two LP modes at four discrete wave...
We experimentally demonstrate 3×10 Gb/s mode group-multiplexed transmission with direction detection...
International audienceThe evolution of the light intensity along an optical waveguide is evaluated b...
We experimentally characterize the characteristics of Rayleigh backscattering arising in few-mode fi...
We experimentally characterize the mode dependent characteristics of Rayleigh backscattering (RB) ar...
We measure inter-modal Rayleigh backscattering in few-mode optical fibers and compare the experiment...
Low-loss all-fiber photonic lantern (PL) capable of selectively exciting the first six fiber modes o...
The extremely low loss of silica fibers has enabled the telecommunication revolution, but single-mod...
Low-loss all-fiber mode selective photonic-lanterns capable of exciting six spatial fiber modes (4 L...
Low-loss all-fiber mode selective photonic-lanterns capable of exciting six spatial fiber modes (4 L...
We propose and experimentally demonstrate a simple method for characterizing the power transfer matr...
We present a novel method to characterize the modal birefringence in a few-mode fiber (FMF), based o...
The ratio of the backscattered power to the input pulse energy is measured in single-mode optical fi...
We experimentally demonstrate a transverse mode-selective fiber laser using a photonic lantern. The ...
A new theory of backscattering in single-mode fibers is presented. It allows backscatter waveforms t...
We use bidirectional OTDR technique to measure effective areas of two LP modes at four discrete wave...
We experimentally demonstrate 3×10 Gb/s mode group-multiplexed transmission with direction detection...
International audienceThe evolution of the light intensity along an optical waveguide is evaluated b...