Zobrazeno 1 - 4
of 4
pro vyhledávání: '"Ben Foo"'
Autor:
Dave Welch, Antonio Napoli, Johan Back, Sanketh Buggaveeti, Carlos Castro, Aaron Chase, Xi Chen, Vince Dominic, Thomas Duthel, Tobias A. Eriksson, Sezer Erkilinc, Peter Evans, Chris R. S. Fludger, Ben Foo, Thomas Frost, Paul Gavrilovic, Steven J. Hand, Aditya Kakkar, Ales Kumpera, Vikrant Lal, Robert Maher, Fabio Marques, Fady Masoud, Atul Mathur, Ray Milano, Miguel Iglesias Olmedo, Magnus Olson, Don Pavinski, Joao Pedro, Amir Rashidinejad, Parmijit Samra, Warren Sande, Azmina Somani, Han Sun, Norman Swenson, Huan-Shang Tsai, Amin Yekani, Jiaming Zhang, Mehrdad Ziari
Publikováno v:
Journal of Lightwave Technology. 41:1175-1191
Autor:
J. Osenbach, Scott Corzine, Júlio César Medeiros Diniz, Vikrant Lal, Miguel Iglesias Olmedo, Huan-Shang Tsai, Mark J. Missey, V. Dominic, D. Pavinski, Ben Foo, Steve Sanders, Robert Brigham, Jiaming Zhang, Amin Yekani, S. Koenig, Stefan Wolf, P. Studenkov, Thomas Frost, Mohammad Al-Khateeb, Mehrdad Ziari, Parmijit Samra, Amir Rashidinejad, Ryan Going, Peter W. Evans, Han Sun, I. Leung, Reza Mirzaei Nejad, Hossein Hodaei, Samantha Kerns, Mohammad Reza Chitgarha, S. Buggaveeti, Stefano Porto, Robert Maher
Publikováno v:
Journal of Lightwave Technology. 40:664-671
We report on the development of a two-channel digital coherent optics (DCO) module, based on a monolithic InP photonic integrated circuit (PIC) transceiver and SiGe application-specific integrated circuit (ASIC), paired with a real-time 7 nm digital
Autor:
Kovendhan Vijayan, Peter A. Andrekson, Samuel L. I. Olsson, Ben Foo, Henrik Eliasson, Magnus Karlsson
Publikováno v:
ECOC
We perform an experimental comparison between copier-phase-sensitive amplifier links operating at 10 and 28 Gbaud as well as with and without distributed Raman amplification to study how the effectiveness of the nonlinearity mitigation is affected by
Autor:
Arthur J. Lowery, Ben Foo
Publikováno v:
ECOC
We review our progress in using few-gigahertz-bandwidth optoelectronic circuits to compensate for cross-phase modulation between widely spaced WDM channels. This technique is suitable for distributed nonlinearity compensation, so suits networks with