This paper demonstrates two optical pulse retiming and reshaping systems incorporating superstructured fiber Bragg gratings (SSFBGs) as pulse shaping elements. A rectangular switching window is implemented to avoid conversion of the timing jitter on the original data pulses into pulse amplitude noise at the output of a nonlinear optical switch. In a first configuration, the rectangular pulse generator is used at the (low power) data input to a nonlinear optical loop mirror (NOLM) to perform retiming of an incident noisy data signal using a clean local clock signal to control the switch. In a second configuration, the authors further amplify the data signal and use it to switch a (low power) clean local clock signal. The S-shaped nonlinear c...
We demonstrate the use of fiber Bragg grating based pulse-shaping technology to provide timing jitte...
The possibility of combining pulse shaping technology with various nonlinear optical switching devic...
Optical pulse shaping finds many important applications in the area of ultrafast photonics. For exam...
Abstract—This paper demonstrates two optical pulse retim-ing and reshaping systems incorporating sup...
This paper demonstrates a retiming system operating at rates of 40 and 160 Gbit/s, which incorporate...
In this letter, we demonstrate the use of a superstructured fiber Bragg grating to preshape optical ...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
Recent advances in ultrafast laser technology call for new all-optical methods for precisely manipul...
Recent advances in ultrafast laser technology call for new all-optical methods for precisely manipul...
Recent advances in ultrafast laser technology call for new all-optical methods for precisely manipul...
We experimentally demonstrate a novel all-optical all-fiberized pulse retiming scheme incorporating ...
We characterize a 160Gbit/s retimer based on flat-topped pulses shaped using a superstructured fibre...
We characterize a 160Gbit/s retimer based on flat-topped pulses shaped using a superstructured fibre...
An all-optical, all-fiberized technique for the elimination of timing jitter in short pulse transmis...
We demonstrate the use of fiber Bragg grating based pulse-shaping technology to provide timing jitte...
The possibility of combining pulse shaping technology with various nonlinear optical switching devic...
Optical pulse shaping finds many important applications in the area of ultrafast photonics. For exam...
Abstract—This paper demonstrates two optical pulse retim-ing and reshaping systems incorporating sup...
This paper demonstrates a retiming system operating at rates of 40 and 160 Gbit/s, which incorporate...
In this letter, we demonstrate the use of a superstructured fiber Bragg grating to preshape optical ...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
In this thesis, the possibility of integrating linear pulse shapers into various all-optical signal ...
Recent advances in ultrafast laser technology call for new all-optical methods for precisely manipul...
Recent advances in ultrafast laser technology call for new all-optical methods for precisely manipul...
Recent advances in ultrafast laser technology call for new all-optical methods for precisely manipul...
We experimentally demonstrate a novel all-optical all-fiberized pulse retiming scheme incorporating ...
We characterize a 160Gbit/s retimer based on flat-topped pulses shaped using a superstructured fibre...
We characterize a 160Gbit/s retimer based on flat-topped pulses shaped using a superstructured fibre...
An all-optical, all-fiberized technique for the elimination of timing jitter in short pulse transmis...
We demonstrate the use of fiber Bragg grating based pulse-shaping technology to provide timing jitte...
The possibility of combining pulse shaping technology with various nonlinear optical switching devic...
Optical pulse shaping finds many important applications in the area of ultrafast photonics. For exam...