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Noisy Kondo impurities

Authors
Delattre, T.Feuillet-Palma, C.Herrmann, L. G.Morfin, P.Berroir, J. -M.Feve, G.Placais, B.Glattli, D. C.Choi, M. -S.Mora, C.Kontos, T.
Issue Date
3월-2009
Publisher
NATURE PUBLISHING GROUP
Citation
NATURE PHYSICS, v.5, no.3, pp.208 - 212
Indexed
SCIE
SCOPUS
Journal Title
NATURE PHYSICS
Volume
5
Number
3
Start Page
208
End Page
212
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/120467
DOI
10.1038/NPHYS1186
ISSN
1745-2473
Abstract
In the original discussion of the Kondo effect, the increase of the resistance in an alloy such as Cu0.998Fe0.002 at low temperature was explained by the antiferromagnetic coupling between a magnetic impurity and the spin of the host's conduction electrons(1). This coupling has since emerged as a very generic property of localized electronic states coupled to a continuum(2-7). Recently, the possibility to design artificial magnetic impurities in nanoscale conductors has opened avenues to the study of this many-body phenomenon in a controlled way and, in particular, in out-of-equilibrium situations(8-10). So far though, measurements have focused on the average current. Current fluctuations ( noise) on the other hand are a sensitive probe that contains detailed information about electronic transport. Here, we report on noise measurements in artificial Kondo impurities realized in carbon-nanotube devices. We find a striking enhancement of the current noise within the Kondo resonance, in contradiction with simple non-interacting theories. Our findings provide a sensitive test bench for one of the most important many-body theories of condensed matter in out-of-equilibrium situations and shed light on the noise properties of highly conductive molecular devices.
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