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Compensating Multimode Fiber Dispersion Using Adaptive Optics. Joseph M. Kahn. Stanford University Department of Electrical Engineering www-ee.stanford.edu/~jmk. Acknowledgments. Collaborators J. P. Wilde S. P. Boyd S. Fan M. A. Horowitz I. Lyubomirsky (Infinera Corporation)
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Compensating Multimode Fiber Dispersion Using Adaptive Optics Joseph M. Kahn Stanford UniversityDepartment of Electrical Engineering www-ee.stanford.edu/~jmk
Acknowledgments Collaborators • J. P. Wilde • S. P. Boyd • S. Fan • M. A. Horowitz • I. Lyubomirsky (Infinera Corporation) • D. F. Welch (Infinera Corporation) Graduate Students • R. A. Panicker • M. Bagher Shemirani • X. Shen • E. Alon (now at UC Berkeley) • V. Stojanovic (now at MIT)
Fourier Lens Iout(t) Photo-Detector AdaptiveAlgorithm Clock & DataRecovery Rec.Data Multimode Fiber Spatial LightModulator Iin(t) ISIEstimation Trans.Data OOKModulator ISI ObjectiveFunction Transmitter Receiver Low-Rate Feedback Channel +0.8 +0.4 Modal Dispersion Compensation Using Adaptive Optics +0.1 -0.3
Experimental Setup X. Shen, J. M. Kahn and M. A. Horowitz, Optics Letters, vol. 30, no. 22, pp. 2985-2987, Nov. 15, 2005.
11 km, Worst SOP, 10 mm Offset Launch,One Iteration Using Step Training Sequence
11 km, Worst SOP, 10 mm Offset Launch,After One Iteration Using Step Training Sequence