As the fiber-to-the-home network construction increased, optical fiber cables are demanded to be easier to handle and require less space. Under this situation, a single mode fiber (SMF) permitting small bending radius is strongly requested. In this paper, we propose and demonstrate a novel type of bending-insensitive single-mode holey fiber which has a doped core and two layers of holes with different air-hole diameters. The fiber has a mode field diameter of 9.3 μm at 1.55 μm and a cutoff wavelength below 1.1 μm, and shows a bending loss of 0.011 dB/turn at 1.55 μm for bending radius of 5 mm and a low splice loss of 0.08 dB per fusion-splicing to a conventional SMF
In this paper, a trench-assisted low-bending-loss large-mode-field-area multi-core fiber with air ho...
We propose an antiresonant hollow-core fiber design that exhibits ultralow loss and exceptional sing...
In this paper, a novel fiber with a parabolic-profile core and eight segmented trenches in cladding ...
In this paper, bending loss and mode field diameter (MFD) of two new multi-clad single mode optical ...
Bending-loss insensitive fiber (BIF) has proved an essential medium for constructing the current fib...
The aims of the study presented here are to develop methods of accurately predicting bend loss in ar...
Extremely large mode area fibers that are single-moded over a broad wavelength range can be created ...
In this paper we evaluate the cut-off properties of holey fibers (HFs) with a triangular lattice of ...
Preliminary work has shown that the bending losses of large-mode-area holey fibers can be improved b...
Little information exists regarding how large-mode holey fibers compare, in practical terms, with th...
We present the first comparison of bend losses in large mode holey and conventional fibres, demonstr...
We experimentally investigate a flexible fabrication technique for low OH and transmission losses ho...
The upper limits imposed by bend loss on practical mode size in single-mode holey and step-index fib...
A novel structure of modified multi-trench fiber (MTF) with characteristics of bend-resistance and l...
This paper was published in Optics Letters and is made available as an electronic reprint with the p...
In this paper, a trench-assisted low-bending-loss large-mode-field-area multi-core fiber with air ho...
We propose an antiresonant hollow-core fiber design that exhibits ultralow loss and exceptional sing...
In this paper, a novel fiber with a parabolic-profile core and eight segmented trenches in cladding ...
In this paper, bending loss and mode field diameter (MFD) of two new multi-clad single mode optical ...
Bending-loss insensitive fiber (BIF) has proved an essential medium for constructing the current fib...
The aims of the study presented here are to develop methods of accurately predicting bend loss in ar...
Extremely large mode area fibers that are single-moded over a broad wavelength range can be created ...
In this paper we evaluate the cut-off properties of holey fibers (HFs) with a triangular lattice of ...
Preliminary work has shown that the bending losses of large-mode-area holey fibers can be improved b...
Little information exists regarding how large-mode holey fibers compare, in practical terms, with th...
We present the first comparison of bend losses in large mode holey and conventional fibres, demonstr...
We experimentally investigate a flexible fabrication technique for low OH and transmission losses ho...
The upper limits imposed by bend loss on practical mode size in single-mode holey and step-index fib...
A novel structure of modified multi-trench fiber (MTF) with characteristics of bend-resistance and l...
This paper was published in Optics Letters and is made available as an electronic reprint with the p...
In this paper, a trench-assisted low-bending-loss large-mode-field-area multi-core fiber with air ho...
We propose an antiresonant hollow-core fiber design that exhibits ultralow loss and exceptional sing...
In this paper, a novel fiber with a parabolic-profile core and eight segmented trenches in cladding ...