Publication: Ultra-broadband nanophotonic phase shifter based on subwavelength metamaterial waveguides
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Date
2020-03-01
Authors
Gonzalez-Andrade, David
Manuel Luque-Gonzalez, Jose
Wanguemert-Perez, J. Gonzalo
Ortega-Monux, Alejandro
Cheben, Pavel
Molina-Fernandez, Inigo
Velasco, Aitor V.
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Publisher
Optical soc amer
Abstract
Optical phase shifters are extensively used in integrated optics not only for telecom and datacom applications but also for sensors and quantum computing. While various active solutions have been demonstrated, progress in passive phase shifters is still lacking. Here we present a new type of ultra-broadband 90 degrees phase shifter, which exploits the anisotropy and dispersion engineering in subwavelength metamaterial waveguides. Our Floquet-Bloch calculations predict a phase-shift error below +/- 1.7 degrees over an unprecedented operation range from 1.35 to 1.75 mu m, i.e., 400 nm bandwidth covering the E, S, C, L, and U telecommunication bands. The flat spectral response of our phase shifter is maintained even in the presence of fabrication errors up to +/- 20 nm, showing greater robustness than conventional structures. Our device was experimentally demonstrated using standard 220 nm thick SOI wafers, showing a fourfold reduction in the phase variation compared to conventional phase shifters within the 145 nm wavelength range of our measurement setup. The proposed subwavelength engineered phase shifter paves the way for novel photonic integrated circuits with an ultra-broadband performance. (C) 2020 Chinese Laser Press
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Keywords
Multimode interference couplers, Refractive-index, Efficient, Compact, Principles, Conversion, Bandwidth, Gratings, Scheme, Switch