An active-fiber-based all-optical first-order temporal differentiator with power efficiency surpassing 100% is demonstrated experimentally. It is based on a long-period fiber grating (LPFG) inscribed into a piece of highly-doped Erbium-doped fiber (EDF). The performed theoretical analysis considers effects like relative position of the LPFG with respect to the input end of the EDF and influence of the input signal power. In the design, parameters like noise characteristics and level of non-linear interaction are taken into account. The advantages of such an implementation over the setup using concatenation of a passive LPFG with an amplifier lies in reducing the unwanted nonlinearities and reducing the amplified spontaneous emission (ASE).<...
We experimentally demonstrate an all-fiber structured bandwidth variable second-order optical tempor...
An optically tunable long-period grating (LPG) on an erbium-doped fiber (EDF) is experimentally demo...
M.Ing.This thesis is about the gain equalization of erbium doped fibre amplifiers (EDFA), which is a...
We review our recent advances on the experimental realization and application of ultrafast all-optic...
Abstract- A simple and practical all-fiber approach for realizing ultrafast optical differentiators ...
A novel configuration of all-fiber photonic temporal differentiator optimized for tens-of-gigahertz ...
We report the experimental realization of an ultrafast all-optical temporal differentiator. Differen...
We report the fabrication of a pi -phase-shifted long-period fiber grating (LPFG) capable of operati...
We propose and demonstrate what we believe to be a new, simple, and compact all-fiber design for arb...
Optical differentiators constitute a basic device for analog all-optical signal processing [1]. Fibe...
Optical differentiators constitute a basic device for analog all-optical signal processing [1]. Fibe...
Traditionally, long period fiber gratings (LPG) are made in passive optical fibers that have negligi...
A recently suggested design for realization of ultrafast (THz-bandwidth) photonic higher-order tempo...
We show that long-period fiber grating (LPG) incorporating N-1-π-phase shifts can serve as an Nth or...
We introduce a general approach for designing ultrabroadband arbitrary-order all-optical (all-fiber)...
We experimentally demonstrate an all-fiber structured bandwidth variable second-order optical tempor...
An optically tunable long-period grating (LPG) on an erbium-doped fiber (EDF) is experimentally demo...
M.Ing.This thesis is about the gain equalization of erbium doped fibre amplifiers (EDFA), which is a...
We review our recent advances on the experimental realization and application of ultrafast all-optic...
Abstract- A simple and practical all-fiber approach for realizing ultrafast optical differentiators ...
A novel configuration of all-fiber photonic temporal differentiator optimized for tens-of-gigahertz ...
We report the experimental realization of an ultrafast all-optical temporal differentiator. Differen...
We report the fabrication of a pi -phase-shifted long-period fiber grating (LPFG) capable of operati...
We propose and demonstrate what we believe to be a new, simple, and compact all-fiber design for arb...
Optical differentiators constitute a basic device for analog all-optical signal processing [1]. Fibe...
Optical differentiators constitute a basic device for analog all-optical signal processing [1]. Fibe...
Traditionally, long period fiber gratings (LPG) are made in passive optical fibers that have negligi...
A recently suggested design for realization of ultrafast (THz-bandwidth) photonic higher-order tempo...
We show that long-period fiber grating (LPG) incorporating N-1-π-phase shifts can serve as an Nth or...
We introduce a general approach for designing ultrabroadband arbitrary-order all-optical (all-fiber)...
We experimentally demonstrate an all-fiber structured bandwidth variable second-order optical tempor...
An optically tunable long-period grating (LPG) on an erbium-doped fiber (EDF) is experimentally demo...
M.Ing.This thesis is about the gain equalization of erbium doped fibre amplifiers (EDFA), which is a...