Scanning Probe Electronic Imaging of Lithographically Patterned Quantum Rings

Rodrigues Martins, Frederico;Hackens, Benoît;Bayot, Vincent;Sellier, H.;Huant, S.;et.al.
(2014) Physics of Quantum Rings — ISBN: [978-3-642-39196-5], published

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Authors
  • Rodrigues Martins, FredericoUCLouvain
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  • Sellier, H.Institut Néel, Université J. Fourier, Grenoble (France)
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  • Huant, S.CNRS, Grenoble
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  • et. al.
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Abstract
Abstract : Quantum rings patterned from two-dimensional semiconductor heterostructures exhibit a wealth of quantum transport phenomena at low temperature and in a magnetic field that can be mapped in real space thanks to dedicated scanning probe techniques. Here, we summarize our studies of GaInAs-based quantum rings by means of scanning gate microscopy both at low magnetic field, where Aharonov-Bohm interferences and the electronic local density of states are imaged, and at high magnetic field and very low temperatures, where the scanning probe can image Coulomb islands in the quantum Hall regime. This allows decrypting the apparent complexity of the magneto resistance of a mesoscopic system in this regime. Beyond imaging and beyond a strict annular shape of the nanostructure, we show that this scanning-probe technique can also be used to unravel a new counterintuitive behavior of branched-out rectangular quantum rings, which turns out to be a mesoscopic analog of the Braess paradox, previously known for road or other classical networks only.
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Citations

Rodrigues Martins, F., Hackens, B., Bayot, V., Sellier, H., Pala, M. G., Huant, S., & et al. (2014). Scanning Probe Electronic Imaging of Lithographically Patterned Quantum Rings. In Fomin, Vladimir M. (eds) (ed.), Physics of Quantum Rings. Springer Verlag. https://doi.org/10.1007/978-3-642-39197-2_5