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Non-equilibrium correlations and entanglement in a semiconductor hybrid circuit-QED system

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njp13_9_095008.pdf (1.440Mb)

peer-reviewed

Erstveröffentlichung
2013-09-16
Authors
Contreras-Pulido, L. Debora
Emary, Clive
Brandes, Tobias
Aguado, Ramon
Wissenschaftlicher Artikel


Published in
New Journal of Physics ; 15 (2013), 9. - Art.-Nr. 095008. - eISSN 1367-2630
Link to original publication
https://dx.doi.org/10.1088/1367-2630/15/9/095008
Faculties
Fakultät für Naturwissenschaften
Institutions
Institut für Theoretische Physik
Document version
published version (publisher's PDF)
Abstract
Abstract We present a theoretical study of a hybrid circuit-quantum electrodynamics system composed of two semiconducting charge-qubits confined in a microwave resonator. The qubits are defined in terms of the charge states of two spatially separated double quantum dots (DQDs) which are coupled to the same photon mode in the microwave resonator. We analyse a transport setup where each DQD is attached to electronic reservoirs and biased out-of-equilibrium by a large voltage, and study how electron transport across each DQD is modified by the coupling to the common resonator. In particular, we show that the inelastic current through each DQD reflects an indirect qubit–qubit interaction mediated by off-resonant photons in the microwave resonator. As a result of this interaction, both charge qubits stay entangled in the steady (dissipative) state. Finite shot noise cross-correlations between currents across distant DQDs are another manifestation of this nontrivial steady-state entanglement.
EU Project uulm
PICC / The physics of Ion Coulomb Crystals: Thermodynamics, Quantum control, and Quantum Simulators. / EC / FP7 / 249958
Subject headings
[GND]: Elektrodynamik
[LCSH]: Electrodynamics
[DDC subject group]: DDC 530 / Physics
License
CC BY 3.0
https://creativecommons.org/licenses/by/3.0/

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DOI & citation

Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-46348

Contreras-Pulido, L. Debora et al. (2022): Non-equilibrium correlations and entanglement in a semiconductor hybrid circuit-QED system. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-46348
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