Applied Optics · 2013 · 20 citations · 24 references
PhotonicsBroadband Dispersion CompensationOptical MaterialsEngineeringDual-core MicrostructureBroadband Dcf DesignOptical Transmission SystemOptical PropertiesMultimaterial FiberMechanical EngineeringFiber OpticsOptical Fiber CommunicationOptical CommunicationFiber OpticDispersion CompensationFiber-optic CommunicationOptical Networking
We present a microstructure-based dual-core dispersion-compensating fiber (DCF) design for dispersion compensation in long-haul optical communication links. The design has been conceptualized by combining the all-solid dual-core DCF and dispersion-compensating photonic crystal fiber. The fiber design has been analyzed numerically by using a full vectorial finite difference time domain method. We propose a fiber design for narrowband as well as broadband dispersion compensation. In the narrowband DCF design, the fiber exhibits very large negative dispersion of around -42,000 ps nm(-1) km(-1) and a large mode area of 67 μm(2). The effects of varying different structural parameters on the dispersion characteristics as well as on the trade-off between full width at half-maximum and dispersion have been investigated. For broadband DCF design, a dispersion value between -860 ps nm(-1)km(-1) and -200 ps nm(-1) km(-1) is obtained for the entire spectral range of the C band.
24
Dispersion compensation using single-material fibers
T. A. Birks, D. Mogilevtsev, J. C. Knight et al. · IEEE Photonics Technology Letters · 1999 · 305 citations
Dispersion-compensating fibers
Lars Grüner-Nielsen, Marie Wandel, P. Kristensen et al. · Journal of Lightwave Technology · 2005 · 254 citations
High-performance Fiber, Fiber Optic, Dispersion Compensation +4
A novel design of a dispersion compensating fiber
K. Thyagarajan, R. K. Varshney, P. Palai et al. · IEEE Photonics Technology Letters · 1996 · 158 citations