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Manifestation of Luttinger liquid effects in a hybrid metal-semiconductor double-quantum dot device

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Title
Manifestation of Luttinger liquid effects in a hybrid metal-semiconductor double-quantum dot device
Author(s)
A.V. Parafilo
Publication Date
2024-12
Journal
Low Temperature Physics, v.50, no.12, pp.1180 - 1188
Publisher
American Institute of Physics
Abstract
We theoretically study the transport properties of a hybrid nanodevice comprised of two large metallic islands incorporated in a two-dimensional electron gas. The high-tunability of the conducting channels electrically connecting two islands to each other and to the leads allows us to treat the setup as a realization of a multi-channel two-site charge Kondo (2SCK) model. It is shown that the leading temperature dependence of the conductance in the 2SCK circuit satisfies the conductance scaling of a single-impurity problem in a Luttinger liquid, whose interaction parameter is fully determined by the number of conducting channels in the device. We demonstrate that the finite weak backscattering in all conducting channels features the appearance of the sub-leading temperature dependencies in linear conductance. At the special critical point, we predict an equivalency between the 2SCK nanodevice and a single-site two-channel charge Kondo problem, where one Kondo channel is implemented by a non-interacting electron gas and the second Kondo channel is attributed to the Luttinger liquid. © 2024 Author(s).
URI
https://pr.ibs.re.kr/handle/8788114/16097
DOI
10.1063/10.0034413
ISSN
1063-777X
Appears in Collections:
Center for Theoretical Physics of Complex Systems(복잡계 이론물리 연구단) > 1. Journal Papers (저널논문)
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