It has been recently demonstrated the fabrication of Long Period Gratings (LPGs) in hollow-core air-silica photonic bandgap fibers by means of pressure assisted Electrode Arc Discharge (EAD). The EAD procedure properly combined with air pressure inside fiber holes enables the localized modification of hole size and shape in both core and cladding region avoiding holes collapsing. LPGs are fabricated with a step-by-step approach by periodically repeated EAD treatment. In this paper, the role of pressure inside the fiber holes has been experimentally investigated in order to achieve design criteria of novel hollow core devices
In this work, we present long period gratings (LPGs) in two different Fluorine-doped fibers realized...
Phosphorus-doped fibers have been reported and discussed in extensive works, as well as the radiatio...
In this paper, we report about the fabrication of long period gratings (LPGs) directly into an Erbiu...
In this paper we report on the fabrication and characterization of Long Period Gratings (LPGs) in ho...
In this paper we report on the fabrication and characterization of Long Period Gratings (LPGs) in ho...
We report on the fabrication of long-period gratings (LPGs) in hollow-core air-silica photonic bandg...
Long period fiber gratings in hollow-core air-silica photonic bandgap fibers were produced by use of...
In this work, we report about our recent results concerning the fabrication of Long Period Grating (...
In this work, we report about our recent results concerning the fabrication of Long Period Grating (...
The recent results about the fabrication and characterization of Long Period Gratings (LPGs) in diff...
A photonic crystal fiber with two large air holes outside the holey cladding region is fabricated to...
We report the investigation of the sensing features of the Long-Period fiber Gratings (LPGs) fabrica...
We report on the investigation of the sensing features of the Long-Period fiber Gratings (LPGs) fabr...
19th International Conference on Optical Fibre Sensors, Perth, Australia, 15-18 April 2008Long perio...
A new method for fabricating long-period gratings (LPGs) in photonic crystal fibers (PCFs) is presen...
In this work, we present long period gratings (LPGs) in two different Fluorine-doped fibers realized...
Phosphorus-doped fibers have been reported and discussed in extensive works, as well as the radiatio...
In this paper, we report about the fabrication of long period gratings (LPGs) directly into an Erbiu...
In this paper we report on the fabrication and characterization of Long Period Gratings (LPGs) in ho...
In this paper we report on the fabrication and characterization of Long Period Gratings (LPGs) in ho...
We report on the fabrication of long-period gratings (LPGs) in hollow-core air-silica photonic bandg...
Long period fiber gratings in hollow-core air-silica photonic bandgap fibers were produced by use of...
In this work, we report about our recent results concerning the fabrication of Long Period Grating (...
In this work, we report about our recent results concerning the fabrication of Long Period Grating (...
The recent results about the fabrication and characterization of Long Period Gratings (LPGs) in diff...
A photonic crystal fiber with two large air holes outside the holey cladding region is fabricated to...
We report the investigation of the sensing features of the Long-Period fiber Gratings (LPGs) fabrica...
We report on the investigation of the sensing features of the Long-Period fiber Gratings (LPGs) fabr...
19th International Conference on Optical Fibre Sensors, Perth, Australia, 15-18 April 2008Long perio...
A new method for fabricating long-period gratings (LPGs) in photonic crystal fibers (PCFs) is presen...
In this work, we present long period gratings (LPGs) in two different Fluorine-doped fibers realized...
Phosphorus-doped fibers have been reported and discussed in extensive works, as well as the radiatio...
In this paper, we report about the fabrication of long period gratings (LPGs) directly into an Erbiu...