Understanding cladding properties is crucial for designing microstructured optical fibers. This is particularly acute for Inhibited-Coupling guiding fibers because of the reliance of their core guidance on the core and cladding mode-field overlap integral. Consequently, careful planning of the fiber cladding parameters allows obtaining fibers with optimized characteristics such as low loss and broad transmission bandwidth. In this manuscript, we report on how one can tailor the modal properties of hollow-core photonic crystal fibers by adequately modifying the fiber cladding. We show that the alteration of the position of the tubular fibers cladding tubes can alter the loss hierarchy of the modes in these fibers, and exhibit salient polariz...
We report on numerical and experimental studies on the influence of cladding ring-number on the conf...
A hollow-core single-ring photonic crystal fiber (SR-PCF) consists of a ring of capillaries arranged...
Hollow-Core Inhibited Coupling Fibers have been the target of great investigation efforts due to the...
Understanding cladding properties is crucial for designing microstructured optical fibers. This is p...
A profound knowledge of the cladding mode properties and their interaction with the core modes is de...
International audienceInhibited-Coupling hollow-core optical fibers: the road for lower transmission...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...
Attenuation in photonic bandgap guiding hollow-core photonic crystal fiber (HC-PCF) has not beaten t...
The last few years have seen the emergence of a new class of hollow-core photonic crystal fibers (HC...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
This thesis reported on guiding principles, linear properties and conceptual design tools of inhibit...
International audienceThe remarkable recent demonstrations in ultralow loss Inhibited-Coupling (IC) ...
We report on numerical and experimental studies on the influence of cladding ring-number on the conf...
A hollow-core single-ring photonic crystal fiber (SR-PCF) consists of a ring of capillaries arranged...
Hollow-Core Inhibited Coupling Fibers have been the target of great investigation efforts due to the...
Understanding cladding properties is crucial for designing microstructured optical fibers. This is p...
A profound knowledge of the cladding mode properties and their interaction with the core modes is de...
International audienceInhibited-Coupling hollow-core optical fibers: the road for lower transmission...
International audienceIn this talk, we report on recent developments on inhibited-coupling guiding h...
Attenuation in photonic bandgap guiding hollow-core photonic crystal fiber (HC-PCF) has not beaten t...
The last few years have seen the emergence of a new class of hollow-core photonic crystal fibers (HC...
International audienceWe report on inhibited-coupling hollow-core optical fibers exhibiting specific...
This thesis reported on guiding principles, linear properties and conceptual design tools of inhibit...
International audienceThe remarkable recent demonstrations in ultralow loss Inhibited-Coupling (IC) ...
We report on numerical and experimental studies on the influence of cladding ring-number on the conf...
A hollow-core single-ring photonic crystal fiber (SR-PCF) consists of a ring of capillaries arranged...
Hollow-Core Inhibited Coupling Fibers have been the target of great investigation efforts due to the...