4 × 10 Gb s−1 wavelength multicasting with tunable NRZ-to-RZ format conversion using nonlinear polarization rotation in an SOA
Shi Liu, Songnian Fu, Ming Tang, Perry Ping Shum, Dan Liu
Abstract
Shi Liu, Songnian Fu, Ming Tang, Perry Ping Shum, Dan Liu
Abstract
We experimentally demonstrate simultaneous 4???10?Gb?s?1 all-optical wavelength multicasting and non-return-to-zero (NRZ)-on-off-keying (OOK) to return-to-zero (RZ)-OOK format conversion with a tunable duty cycle using nonlinear polarization rotation in a semiconductor optical amplifier (SOA). The experimental results show that the duty cycle of four converted RZ-OOK signals can be tuned by adjusting the orientation of a polarizer placed at the SOA output. Four-channel NRZ-OOK-to-RZ-OOK conversion with a full width at half maximum of 33?67?ps can be simultaneously obtained with an extinction ratio over 10?dB. Moreover, it is experimentally verified that such a wavelength multicasting scheme with simultaneous NRZ-OOK-to-RZ-OOK conversion is insensitive to the wavelength of the input signal, indicating that such a scheme can be operated in the whole C-band with less than 0.18?dB power penalty at a bit error ratio level of 10?9. The device can facilitate the cross-connection between optical transmission networks employing different modulation formats.
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We experimentally demonstrate simultaneous 4???10?Gb?s?1 all-optical wavelength multicasting and non-return-to-zero (NRZ)-on-off-keying (OOK) to return-to-zero (RZ)-OOK format conversion with a tunable duty cycle using nonlinear polarization rotation in a semiconductor optical amplifier (SOA). The experimental results show that the duty cycle of four converted RZ-OOK signals can be tuned by adjusting the orientation of a polarizer placed at the SOA output. Four-channel NRZ-OOK-to-RZ-OOK conversion with a full width at half maximum of 33?67?ps can be simultaneously obtained with an extinction ratio over 10?dB. Moreover, it is experimentally verified that such a wavelength multicasting scheme with simultaneous NRZ-OOK-to-RZ-OOK conversion is insensitive to the wavelength of the input signal, indicating that such a scheme can be operated in the whole C-band with less than 0.18?dB power penalty at a bit error ratio level of 10?9. The device can facilitate the cross-connection between optical transmission networks employing different modulation formats.
Key concepts: Extinction ratio, Optics, Physics, Duty cycle, Wavelength, Polarization (electrochemistry), Amplitude-shift keying, Keying