A highly birefringent hollow-core photonic bandgap fiber based on Topas cyclic olefin copolymer is designed. The rhombic hollow-core with rounded corners is formed by omitting four central air holes of the cladding structure. The guided modes, birefringence and confinement loss of the fiber are investigated by using the full-vector finite element method. A high phase birefringence of the order of 10(-3), a group birefringence of the order of 10(-2) and confinement loss less than 0.1 dB/km are obtained at the central wavelength (1.55 mu m) range of the bandgap for fiber with seven rings of air holes in the cladding region. (C) 2010 Elsevier B.V. All rights reserved
A novel design of Hexa Sectored Photonic Crystal Fiber (HS-PCF) with high nonlinearity and high bire...
We propose a highly birefringent and dispersion compensating photonic crystal fiber based on a doubl...
The operational bandwidth of hollow-core photonic bandgap fibers (PBGFs) is drastically affected by ...
International audienceWe report on the fabrication and the characterization of a design of highly bi...
Conventional optical fibres can only guide light in a high refractive index core by total internal r...
We present a holey fiber (HF) with elliptical air-holes located in the center core area that ensures...
A novel hybrid hollow-core polarization-maintaining fiber is proposed by combining the photonic band...
This paper theoretically describes effective suppression of higher order modes (HOMs) in realistic l...
We fabricate an elliptical hollow-core photonic bandgap fiber (EC-PBGF) with a core-wall thickness o...
This paper proposes a hexagonal photonic crystal fiber (H-PCF) structure with all circular air holes...
Two types of high birefringence photonic crystal fiber (PCF) which import four or six big circular a...
In this paper a highly polarization maintaining birefringent photonic crystal fiber at telecommunica...
We report the fabrication of a novel type of hollow core photonic bandgap fiber (PBGF) with a small ...
A novel high birefringence and nearly zero dispersion-flattened photonic crystal fiber (PCF) with el...
Light guidance in air has significant potential in diverse photonics applications, one of hich is op...
A novel design of Hexa Sectored Photonic Crystal Fiber (HS-PCF) with high nonlinearity and high bire...
We propose a highly birefringent and dispersion compensating photonic crystal fiber based on a doubl...
The operational bandwidth of hollow-core photonic bandgap fibers (PBGFs) is drastically affected by ...
International audienceWe report on the fabrication and the characterization of a design of highly bi...
Conventional optical fibres can only guide light in a high refractive index core by total internal r...
We present a holey fiber (HF) with elliptical air-holes located in the center core area that ensures...
A novel hybrid hollow-core polarization-maintaining fiber is proposed by combining the photonic band...
This paper theoretically describes effective suppression of higher order modes (HOMs) in realistic l...
We fabricate an elliptical hollow-core photonic bandgap fiber (EC-PBGF) with a core-wall thickness o...
This paper proposes a hexagonal photonic crystal fiber (H-PCF) structure with all circular air holes...
Two types of high birefringence photonic crystal fiber (PCF) which import four or six big circular a...
In this paper a highly polarization maintaining birefringent photonic crystal fiber at telecommunica...
We report the fabrication of a novel type of hollow core photonic bandgap fiber (PBGF) with a small ...
A novel high birefringence and nearly zero dispersion-flattened photonic crystal fiber (PCF) with el...
Light guidance in air has significant potential in diverse photonics applications, one of hich is op...
A novel design of Hexa Sectored Photonic Crystal Fiber (HS-PCF) with high nonlinearity and high bire...
We propose a highly birefringent and dispersion compensating photonic crystal fiber based on a doubl...
The operational bandwidth of hollow-core photonic bandgap fibers (PBGFs) is drastically affected by ...