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Published on: August 26, 2010
Reversible Mapping and Sorting the Spin of Photons on the Nanoscale: A Spin-Optical Nanodevice
Enno Krauss1, Gary Razinskas1, Dominik Köck1
1NanoOptics and Biophotonics Group, Experimental Physics 5 , University of Würzburg , Am Hubland, 97074 Würzburg , Germany.
Abstract:
The photon spin is an important resource for quantum information processing as is the electron spin in spintronics. However, for subwavelength confined optical excitations, polarization as a global property of a mode cannot be defined. Here, we show that any polarization state of a plane-wave photon can reversibly be mapped to a pseudospin embodied by the two fundamental modes of a subwavelength plasmonic two-wire transmission line. We design a device in which this pseudospin evolves in a well-defined fashion throughout the device reminiscent of the evolution of photon polarization in a birefringent medium and the behavior of electron spins in the channel of a spin field-effect transistor. The significance of this pseudospin is enriched by the fact that it is subject to spin-orbit locking. Combined with optically active materials to exert external control over the pseudospin precession, our findings could enable spin-optical transistors, that is, the routing and processing of quantum information with light on a subwavelength scale.
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