In this letter, we report the fabrication and application of 255-chip 320 Gchip/s quaternary phase superstructure fiber Bragg gratings (SSFBGs) for optical code generation and recognition in a four-channel wavelength-division-multiplexing (WDM)/optical code-division-multiplexing (OCDM) experiment. Individual users of the system operate with different coding schemes, repetition rates, and wavelengths. Our experiments show that a single SSFBG can be used to perform simultaneous optical decoding and wavelength channel selection
Optical-code-division multiple access (OCDMA) technology based on superstructured fiber Bragg gratin...
We report a reconfigurable 16-channel OCDMA/DWDM system (4 OCDMA× 4 DWDM) based on novel 31-chip, 40...
A 7-chip, 160-Gchip/s phase-shift keyed code is assigned to short pulses after reflection from a sup...
Abstract—In this letter, we report the fabrication and appli-cation of 255-chip 320 Gchip/s quaterna...
Abstract: We report four channel WDM/OCDMA experiments using superstructured fiber Bragg gratings fo...
We report four channel WDM/OCDMA experiments using superstructured fiber Bragg gratings for coding a...
We demonstrate a reconfigurable 16-channel optical code-division multiple access (OCDMA)/dense wavel...
The area of Optical Code Division Multiple Access (OCDMA) systems has received steadily growing inte...
We report a range of elementary optical coding and decoding experiments employing superstructured fi...
We report a range of elementary optical coding and decoding experiments employing superstructured fi...
Optical Code Division Multiple Access (OCDMA) is capable of providing future local area networks wit...
We demonstrate a 16-chip, 40Gchip/s, reconfigurable fiber Bragg grating based quaternary phase en/de...
We demonstrate the application of a uniform Bragg grating as a dynamically reconfigurable phase enco...
We investigate the benefits of using time-gating detection in an optical code-division multiple acce...
This thesis documents my work in the telecommunication system laboratory at the Optoelectronics Rese...
Optical-code-division multiple access (OCDMA) technology based on superstructured fiber Bragg gratin...
We report a reconfigurable 16-channel OCDMA/DWDM system (4 OCDMA× 4 DWDM) based on novel 31-chip, 40...
A 7-chip, 160-Gchip/s phase-shift keyed code is assigned to short pulses after reflection from a sup...
Abstract—In this letter, we report the fabrication and appli-cation of 255-chip 320 Gchip/s quaterna...
Abstract: We report four channel WDM/OCDMA experiments using superstructured fiber Bragg gratings fo...
We report four channel WDM/OCDMA experiments using superstructured fiber Bragg gratings for coding a...
We demonstrate a reconfigurable 16-channel optical code-division multiple access (OCDMA)/dense wavel...
The area of Optical Code Division Multiple Access (OCDMA) systems has received steadily growing inte...
We report a range of elementary optical coding and decoding experiments employing superstructured fi...
We report a range of elementary optical coding and decoding experiments employing superstructured fi...
Optical Code Division Multiple Access (OCDMA) is capable of providing future local area networks wit...
We demonstrate a 16-chip, 40Gchip/s, reconfigurable fiber Bragg grating based quaternary phase en/de...
We demonstrate the application of a uniform Bragg grating as a dynamically reconfigurable phase enco...
We investigate the benefits of using time-gating detection in an optical code-division multiple acce...
This thesis documents my work in the telecommunication system laboratory at the Optoelectronics Rese...
Optical-code-division multiple access (OCDMA) technology based on superstructured fiber Bragg gratin...
We report a reconfigurable 16-channel OCDMA/DWDM system (4 OCDMA× 4 DWDM) based on novel 31-chip, 40...
A 7-chip, 160-Gchip/s phase-shift keyed code is assigned to short pulses after reflection from a sup...