[Nonlinear Physics Centre]
  Nature Photonics 2, 748-753 (Dec 2008)
Home page
+People
+Research
+Study
-Papers
Contact us
Recent papers
Opt. Express 17, 21732-21737 (12 Nov 2009)
Opt. Express 17, 20063-20068 (20 Oct 2009)
Opt. Express 17, 18196-18208 (24 Sep 2009)
Opt. Lett. 34, 2751-2753 (15 Sep 2009)
Appl. Phys. Lett. 95, 084105-3 (27 Aug 2009)
more...
Student scholarships available
Do your Honours or PhD with the Centre for Ultrahigh- bandwidth Devices for Optical Systems
Geometrodynamics of spinning light
K. Y. Bliokh, A. Niv, V. Kleiner, and E. Hasman,
Nature Photonics 2, 748-753 (2008).
Abstract: The semiclassical evolution of spinning particles has recently been re-examined in condensed matter physics, high-energy physics, and optics, resulting in the prediction of the intrinsic spin Hall effect associated with the Berry phase. A fundamental origin of this effect is related to the spin–orbit interaction and topological monopoles. Here, we report a unified theory and a direct observation of two mutual phenomena: a spin-dependent deflection (the spin Hall effect) of photons and the precession of the Stokes vector along the coiled ray trajectory of classical geometrical optics. Our measurements are in perfect agreement with theoretical predictions, thereby verifying the dynamical action of the topological Berry-phase monopole in the evolution of light. These results may have promising applications in nano-optics and can be immediately extrapolated to the evolution of massless particles in a variety of physical systems.

Copyright © by the respective publisher. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the publisher.

  Copyright © 2001-2009 Nonlinear Physics Centre All rights reserved.