Spatial self-imaging, consisting of the periodic replication of the optical transverse beam profile along the propagation direction, can be achieved in guided wave systems when all excited modes interfere in phase. We exploited material defects photoluminescence for directly visualizing self-imaging in a few-mode, nominal singlemode SMF-28 optical fiber. Visible luminescence was excited by intense femtosecond infrared pulses via multiphoton absorption processes. Our method permits us to determine the mode propagation constants and the cutoff wavelength of transverse fiber modes
We experimentally demonstrate spatial beam self-cleaning and supercontinuum generation in a tapered ...
In this paper, a theoretical and experimental investigation of the multimode interference induced se...
Multimode optical fibers are attracting a growing interest for their capability to transport high-po...
Beam self-imaging of ultrashort pulses in nonlinear graded-index (GRIN) multimode optical fibers is ...
Multimode optical fibers have recently regained a strong interest in particular because of their abi...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Shedding light on nonlinear loss occurring close to multimode optical fiber damage threshold, we dem...
Beam self-imaging of ultrashort pulses in nonlinear graded-index (GRIN) multimode optical fibers is ...
Multimode interference (MMI) in optical fibers has been studied and its applications in optical fibe...
Multimode optical fibres are enjoying renewed attention, boosted by the urgent need to overcome the...
For a long time, interest in multimode (MM) optical fibers has remained limited, owing to the poor q...
Multimode optical fibers (MMF) recently attracted a renewed attention, because of their potential f...
We experimentally demonstrate spatial beam self-cleaning and supercontinuum generation in a tapered ...
In this paper, a theoretical and experimental investigation of the multimode interference induced se...
Multimode optical fibers are attracting a growing interest for their capability to transport high-po...
Beam self-imaging of ultrashort pulses in nonlinear graded-index (GRIN) multimode optical fibers is ...
Multimode optical fibers have recently regained a strong interest in particular because of their abi...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Beam self-imaging in nonlinear graded-index multimode optical fibers is of interest for many applica...
Shedding light on nonlinear loss occurring close to multimode optical fiber damage threshold, we dem...
Beam self-imaging of ultrashort pulses in nonlinear graded-index (GRIN) multimode optical fibers is ...
Multimode interference (MMI) in optical fibers has been studied and its applications in optical fibe...
Multimode optical fibres are enjoying renewed attention, boosted by the urgent need to overcome the...
For a long time, interest in multimode (MM) optical fibers has remained limited, owing to the poor q...
Multimode optical fibers (MMF) recently attracted a renewed attention, because of their potential f...
We experimentally demonstrate spatial beam self-cleaning and supercontinuum generation in a tapered ...
In this paper, a theoretical and experimental investigation of the multimode interference induced se...
Multimode optical fibers are attracting a growing interest for their capability to transport high-po...