Chalcogenide suspended core fibers are a valuable solution to obtain supercontinuum generation of light in the mid-infrared, thanks to glass high transparency, high index contrast, small core diameter and widely-tunable dispersion. In this work the dispersion and nonlinear properties of several chalcogenide suspended core mi-crostructured fibers are numerically evaluated, and the effects of all the structural parameters are investigated. Optimization of the design is carried out to provide a fiber suitable for wide-band supercontinuum generation in the mid-infrared
As2S3 and As2Se3 chalcogenide 3-bridges suspended-core fibers (SCFs) are designed with shifted zero-...
This work presents a numerical study of a W-type index chalcogenide fiber design for Mid-Infrared (M...
Mid-infrared region supercontinuum (SC) generation through designing broadband light sources recentl...
Chalcogenide suspended core fibers are a valuable solution to obtain supercontinuum generation of li...
Due to their unique dispersion and nonlinear properties, chalcogenide suspended-core fibers, charact...
Due to their unique dispersion and nonlinear properties, chalcogenide suspended-core fibers, charact...
Chalcogenide suspended core fibers are a valuable solution to obtain supercontinuum generation of li...
Chalcogenide optical fibers are currently undergoing intensive investigation with the aim of exploit...
Chalcogenide optical fibers are currently undergoing intensive investigation with the aim of exploit...
Chalcogenide optical fibers are currently undergoing intensive investigation with the aim of exploit...
Due to their unique dispersion and nonlinear properties, chalcogenide suspended-core fibers, charact...
This paper presents the design of a W-type index chalcogenide fiber for mid-infrared beyond 10μm. Th...
We report simulation results of supercontinuum generation in the suspended-core optical fibers made ...
An ultrabroadband mid-infrared supercontinuum (SC) source has been designed and modeled using a 10-m...
We demonstrate numerically that the use of dispersion-engineered microstrucured fibers made with cha...
As2S3 and As2Se3 chalcogenide 3-bridges suspended-core fibers (SCFs) are designed with shifted zero-...
This work presents a numerical study of a W-type index chalcogenide fiber design for Mid-Infrared (M...
Mid-infrared region supercontinuum (SC) generation through designing broadband light sources recentl...
Chalcogenide suspended core fibers are a valuable solution to obtain supercontinuum generation of li...
Due to their unique dispersion and nonlinear properties, chalcogenide suspended-core fibers, charact...
Due to their unique dispersion and nonlinear properties, chalcogenide suspended-core fibers, charact...
Chalcogenide suspended core fibers are a valuable solution to obtain supercontinuum generation of li...
Chalcogenide optical fibers are currently undergoing intensive investigation with the aim of exploit...
Chalcogenide optical fibers are currently undergoing intensive investigation with the aim of exploit...
Chalcogenide optical fibers are currently undergoing intensive investigation with the aim of exploit...
Due to their unique dispersion and nonlinear properties, chalcogenide suspended-core fibers, charact...
This paper presents the design of a W-type index chalcogenide fiber for mid-infrared beyond 10μm. Th...
We report simulation results of supercontinuum generation in the suspended-core optical fibers made ...
An ultrabroadband mid-infrared supercontinuum (SC) source has been designed and modeled using a 10-m...
We demonstrate numerically that the use of dispersion-engineered microstrucured fibers made with cha...
As2S3 and As2Se3 chalcogenide 3-bridges suspended-core fibers (SCFs) are designed with shifted zero-...
This work presents a numerical study of a W-type index chalcogenide fiber design for Mid-Infrared (M...
Mid-infrared region supercontinuum (SC) generation through designing broadband light sources recentl...