Small-core holey fibers (HFs) can offer tight mode confinement, and are, therefore, attractive for highly nonlinear fiber applications. However, we show here that confinement loss can significantly degrade the performance of devices based on such small core fibers. We also identify a range of fiber designs that result in high fiber nonlinearity and low confinement loss. In particular, we show that pure silica HFs can exhibit effective nonlinearities more than 50 times higher than conventional fibers, and that the confinement loss can be lowered below the loss of standard fiber types
Copyright © 2008 IEEE. Personal use of this material is permitted. However, permission to reprint/re...
We review our recent activities in the development of small-core, active holey fibers and describe a...
Micron-scale features in holey fibres lead to novel properties including endlessly single-mode guida...
Copyright © 2003 IEEESmall-core holey fibers (HFs) can offer tight mode confinement, and are, theref...
Holey fibers with small-core dimensions relative to the optical wavelength and large air-filling fra...
Holey fibers with small-core dimensions relative to the optical wavelength and large air-filling fra...
Microstructured optical fibres (MOFs) are all-silica fibres that guide light by means of an arrangem...
Holey fibres (HFs) [1] have emerged as a novel class of optical fibres which can provide completely ...
Holey fibre (HF) technology provides a new way to fabricate novel highly nonlinear silica based fibr...
We describe our recent progress in the development of next-generation small-core holey fibers (HFs) ...
In conclusion, we have applied the multipole approach to holey optical fibres with cladding features...
In this paper we present a novel and simple method of producing small core holey fibres with nonline...
Microstructured or holey optical fibres are a novel class of fibres that have attracted much interes...
Since the first microstructured optical fiber was made in 1996, holey fibers (HFs) have attracted gr...
This paper was published in Optics Letters and is made available as an electronic reprint with the p...
Copyright © 2008 IEEE. Personal use of this material is permitted. However, permission to reprint/re...
We review our recent activities in the development of small-core, active holey fibers and describe a...
Micron-scale features in holey fibres lead to novel properties including endlessly single-mode guida...
Copyright © 2003 IEEESmall-core holey fibers (HFs) can offer tight mode confinement, and are, theref...
Holey fibers with small-core dimensions relative to the optical wavelength and large air-filling fra...
Holey fibers with small-core dimensions relative to the optical wavelength and large air-filling fra...
Microstructured optical fibres (MOFs) are all-silica fibres that guide light by means of an arrangem...
Holey fibres (HFs) [1] have emerged as a novel class of optical fibres which can provide completely ...
Holey fibre (HF) technology provides a new way to fabricate novel highly nonlinear silica based fibr...
We describe our recent progress in the development of next-generation small-core holey fibers (HFs) ...
In conclusion, we have applied the multipole approach to holey optical fibres with cladding features...
In this paper we present a novel and simple method of producing small core holey fibres with nonline...
Microstructured or holey optical fibres are a novel class of fibres that have attracted much interes...
Since the first microstructured optical fiber was made in 1996, holey fibers (HFs) have attracted gr...
This paper was published in Optics Letters and is made available as an electronic reprint with the p...
Copyright © 2008 IEEE. Personal use of this material is permitted. However, permission to reprint/re...
We review our recent activities in the development of small-core, active holey fibers and describe a...
Micron-scale features in holey fibres lead to novel properties including endlessly single-mode guida...