arXiv · 1906.02673
Synchronized Wavelength-Swept Signal Transmission and its Ability to Evade Optical Reflection Crosstalk
Abstract
Coherent homodyne detection requires a precise matching of emission wavelengths between transmitter and local oscillator at the receiver. Injection-locking can provide all-optical synchronization of the emission frequencies, even under wavelength-swept emission. By adapting the sweep parameters to the conditions in the optical fiber plant, transmission impairments can be mitigated. In this regard I experimentally demonstrate that a wavelength-hopping yet locked transceiver pair, which builds on conceptually simple externally modulated laser technology, features a much higher robustness to reflection crosstalk. The reception penalty due to distortions arising at a Fresnel reflection in the transmission path can be reduced by >90% at a low optical signal-to-reflection ratio of ~0 dB.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Bernhard Schrenk. 2019-06-01. Synchronized Wavelength-Swept Signal Transmission and its Ability to Evade Optical Reflection Crosstalk. https://doi.org/10.1364/ol.44.002771
Cite the original work for its findings. Save a collection to share your selection of sources.