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      Discretizing light behaviour in linear and nonlinear waveguide lattices.

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          Abstract

          Light propagating in linear and nonlinear waveguide lattices exhibits behaviour characteristic of that encountered in discrete systems. The diffraction properties of these systems can be engineered, which opens up new possibilities for controlling the flow of light that would have been otherwise impossible in the bulk: these effects can be exploited to achieve diffraction-free propagation and minimize the power requirements for nonlinear processes. In two-dimensional networks of waveguides, self-localized states--or discrete solitons--can travel along 'wire-like' paths and can be routed to any destination port. Such possibilities may be useful for photonic switching architectures.

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          Author and article information

          Journal
          Nature
          Nature
          Springer Science and Business Media LLC
          1476-4687
          0028-0836
          Aug 14 2003
          : 424
          : 6950
          Affiliations
          [1 ] School of Optics/CREOL, University of Central Florida, Orlando, Florida 32816-2700, USA.
          Article
          nature01936
          10.1038/nature01936
          12917695
          4a91f3ba-9236-4075-9ad5-7d20f8fc07e9
          History

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