Publication | Closed Access
Generation of linear and nonlinear nonparaxial accelerating beams
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Citations
17
References
2012
Year
Colloidal MaterialEngineeringCircular TrajectoriesFluid MechanicsMechanical EngineeringComputational MechanicsSoft MatterNonlinear Mechanical SystemNonlinear Self-accelerating BeamsBeam OpticMechanicsNonlinear Wave PropagationRheologyNonlinear VibrationPhysicsColloidal PropertyPolystyrene NanoparticlesColloidal SystemApplied Physics
We study linear and nonlinear self-accelerating beams propagating along circular trajectories beyond the paraxial approximation. Such nonparaxial accelerating beams are exact solutions of the Helmholtz equation, preserving their shapes during propagation even under nonlinearity. We generate experimentally and observe directly these large-angle bending beams in colloidal suspensions of polystyrene nanoparticles.
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