Electronic analogy of Goos-Hänchen effect: a review
arXiv:1301.3549 · doi:10.1088/2040-8978/15/3/033001
Abstract
The analogies between optical and electronic Goos-Hänchen effects are established based on electron wave optics in semiconductor or graphene-based nanostructures. In this paper, we give a brief overview of the progress achieved so far in the field of electronic Goos-Hänchen shifts, and show the relevant optical analogies. In particular, we present several theoretical results on the giant positive and negative Goos-Hänchen shifts in various semiconductor or graphen-based nanostructures, their controllability, and potential applications in electronic devices, e.g. spin (or valley) beam splitters.
21 pages, 5 figures, contribution to "Beam Shifts" special issue in Journal of Optics
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Cited by in corpus (25)
- Topological Imbert-Fedorov shift in Weyl semimetals
- Ballistic charge transport in graphene and light propagation in periodic dielectric structures with metamaterials: a comparative study
- Goos-Hanchen shift of a spin-wave beam transmitted through anisotropic interface between two ferromagnets
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- Goos-Hänchen shifts in spin-orbit-coupled cold atoms
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