Goos-Hänchen and Imbert-Fedorov shifts of polarized vortex beams
arXiv:0810.2855 · doi:10.1364/OL.34.000389
Abstract
We study, analytically and numerically, reflection and transmission of an arbitrarily polarized vortex beam on an interface separating two dielectric media and derive general expressions for linear and angular Goos-Hanchen and Imbert-Fedorov shifts. We predict a novel vortex-induced Goos-Hanchen shift, and also reveal direct connection between the spin-induced angular shifts and the vortex-induced linear shifts.
4 pages, 2 figures, to appear in Optics Letters
References in corpus (3)
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- The analogy between optical beam shifts and quantum weak measurements
- Topological aberration of optical vortex beams and singularimetry of dielectric interfaces
- Spin Hall effect of a light beam in left-handed materials
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- Giant Goos-Hänchen shift in Scattering: the role of interfering Localized Plasmon modes
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- Goos-Hänchen and Imbert-Fedorov Shifts for Epsilon-Near-Zero Materials
- On anomalous optical beam shifts at near-normal incidence
- Diffraction of an Off-axis Vector-Beam by a Tilted Aperture
- Wigner time delays and Goos-Hänchen shifts of 2D quantum vortices scattered by potential barriers
- Transverse Shifts and Time Delays of Spatiotemporal Vortex Pulses Reflected and Refracted at a Planar Interface