International audienceWe report on a passive all-optical clock recovery technique based on data signal filtering with a Fabry-Perot filter, tested in a 40 Gb/s transmission system. We have simulated the clock recovery principle to choose the filter finesse and then investigate with experiment the method for 43 Gbit/s RZ signal clock recovery ahead of a receiver. We use Bit Error Rate assessment to demonstrate its system compatibility and to evaluate both its pattern sequence length tolerance and, for the first time, its clock locking range
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
40 GHz clock extraction from a common 40 Gbit/s NRZ signal is experimentally demonstrated. First, a ...
40 GHz clock extraction from a common 40 Gbit/s NRZ signal is experimentally demonstrated. First, a ...
40 GHz clock extraction from a common 40 Gbit/s NRZ signal is experimentally demonstrated. First, a ...
International audienceIn this paper, we present a complete study of the pattern sequence length infl...
International audienceIn this paper, we present a complete study of the pattern sequence length infl...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
All-optical clock recovery from 40 Gbit/s non-return-to-zero (NRZ) data has been experimentally demo...
All-optical clock recovery from 40 Gbit/s non-return-to-zero (NRZ) data has been experimentally demo...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
International audienceWe report on a passive all-optical clock recovery technique based on data sign...
40 GHz clock extraction from a common 40 Gbit/s NRZ signal is experimentally demonstrated. First, a ...
40 GHz clock extraction from a common 40 Gbit/s NRZ signal is experimentally demonstrated. First, a ...
40 GHz clock extraction from a common 40 Gbit/s NRZ signal is experimentally demonstrated. First, a ...
International audienceIn this paper, we present a complete study of the pattern sequence length infl...
International audienceIn this paper, we present a complete study of the pattern sequence length infl...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
All-optical clock recovery from 40 Gbit/s non-return-to-zero (NRZ) data has been experimentally demo...
All-optical clock recovery from 40 Gbit/s non-return-to-zero (NRZ) data has been experimentally demo...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...
We experimentally demonstrate 40 GHz all-optical clock recovery from a common 40 Gb/s NRZ signal. We...