We present a method to enhance the sensitivity of interferometer based techniques employed for the in-band measurement of optical signal-to-noise ratio (OSNR) in wavelength division multiplexed (WDM) optical transmission systems. With respect to conventional schemes, a narrow band filter (NBF) is added before the variable delay interferometer performing the autocorrelation measurement. The NBF is used to select within the signal spectrum only those frequencies where the signal power spectral density (PSD) is locally lower and more sensitive to noise effects. Performance monitoring of a 10 Gb/s on-off keying (OOK) non-return to zero (NRZ) signal is numerically and experimentally investigated for an OSNR level ranging from 5 dB to 25 dB. Desi...
In-band OSNR measurement for CO-OFDM systems using high-resolution spectral analysis is experimental...
With the rapid development of ultra-dense large capacity coherent WDM optical communication networks...
We demonstrate in-band optical signal to noise monitoring of an 1.28 Tbit/s signal by implementing a...
We present a method to enhance the sensitivity of interferometer based techniques employed for the i...
We introduce a novel technique to monitor the optical signal-to-noise ratio (OSNR) using a Mach-Zehn...
We report on a compact ( footprint) silicon photonics integrated system performing high-sensitivity ...
We report on a compact ( footprint) silicon photonics integrated system performing high-sensitivity ...
A method for monitoring optical signal to noise ratio (OSNR) using a Mach-Zehnder interferometer was...
A high sensitivity in-band OSNR monitor system integrated on SOI platform is presented. The device e...
Abstract—We propose and experimentally demonstrate a new technique for monitoring optical signal-to-...
© 2006 Dr. Wei ChengOptical performance monitoring is essential for managing optical networks. One i...
We demonstrate high-sensitivity in-band OSNR monitoring on a SOI platform. The integrated system, in...
A novel method for simultaneous optical signal-to-noise ratio and chromatic dispersion monitoring in...
We demonstrate high-sensitivity in-band OSNR monitoring on a SOI platform. The integrated system, in...
Abstract—A novel method for simultaneous optical signal-to-noise ratio and chromatic dispersion moni...
In-band OSNR measurement for CO-OFDM systems using high-resolution spectral analysis is experimental...
With the rapid development of ultra-dense large capacity coherent WDM optical communication networks...
We demonstrate in-band optical signal to noise monitoring of an 1.28 Tbit/s signal by implementing a...
We present a method to enhance the sensitivity of interferometer based techniques employed for the i...
We introduce a novel technique to monitor the optical signal-to-noise ratio (OSNR) using a Mach-Zehn...
We report on a compact ( footprint) silicon photonics integrated system performing high-sensitivity ...
We report on a compact ( footprint) silicon photonics integrated system performing high-sensitivity ...
A method for monitoring optical signal to noise ratio (OSNR) using a Mach-Zehnder interferometer was...
A high sensitivity in-band OSNR monitor system integrated on SOI platform is presented. The device e...
Abstract—We propose and experimentally demonstrate a new technique for monitoring optical signal-to-...
© 2006 Dr. Wei ChengOptical performance monitoring is essential for managing optical networks. One i...
We demonstrate high-sensitivity in-band OSNR monitoring on a SOI platform. The integrated system, in...
A novel method for simultaneous optical signal-to-noise ratio and chromatic dispersion monitoring in...
We demonstrate high-sensitivity in-band OSNR monitoring on a SOI platform. The integrated system, in...
Abstract—A novel method for simultaneous optical signal-to-noise ratio and chromatic dispersion moni...
In-band OSNR measurement for CO-OFDM systems using high-resolution spectral analysis is experimental...
With the rapid development of ultra-dense large capacity coherent WDM optical communication networks...
We demonstrate in-band optical signal to noise monitoring of an 1.28 Tbit/s signal by implementing a...