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Article
Discrete Beam Acceleration in Uniform Waveguide Arrays
Physical Review A (2011)
  • Ramy El-Ganainy, University of Toronto
  • Konstantinos G. Makris
  • Mohammad-Ali Miri, University of Central Florida
  • Demetrios N. Christodoulides, University of Central Florida
  • Zhigang Chen, San Francisco State University
Abstract

Within the framework of the tight-binding model we demonstrate that Wannier-Stark states can freely accelerate in uniform optical lattices. As opposed to accelerating Airy wave packets in free space, our analysis reveals that in this case the beam main intensity features self-bend along two opposite hyperbolic trajectories. Two-dimensional geometries are also considered and an asymptotic connection between these Wannier-Stark ladders and Airy profiles is presented.

Disciplines
Publication Date
August 25, 2011
Publisher Statement
© 2011 American Physical Society. Deposited here in compliance with publisher policies. Publisher's version of record: http://dx.doi.org/10.1103/PhysRevA.84.023842
Citation Information
Ramy El-Ganainy, Konstantinos G. Makris, Mohammad-Ali Miri, Demetrios N. Christodoulides, et al.. "Discrete Beam Acceleration in Uniform Waveguide Arrays" Physical Review A Vol. 84 (2011)
Available at: http://works.bepress.com/ramy_el-ganainy/12/