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Magazzù, Luca ; Forn-Díaz, P. ; Belyansky, R. ; Orgiazzi, J.-L. ; Yurtalan, M.A. ; Otto, M.R. ; Lapascu, A. ; Wilson, C.M. ; Grifoni, Milena

Probing the strongly driven spin-boson model in a superconducting quantum circuit

Magazzù, Luca, Forn-Díaz, P., Belyansky, R., Orgiazzi, J.-L., Yurtalan, M.A., Otto, M.R., Lapascu, A., Wilson, C.M. und Grifoni, Milena (2018) Probing the strongly driven spin-boson model in a superconducting quantum circuit. Nature Communications 9 (1), S. 1403.

Veröffentlichungsdatum dieses Volltextes: 13 Apr 2018 06:03
Artikel
DOI zum Zitieren dieses Dokuments: 10.5283/epub.37082

WarnungEs ist eine neuere Version dieses Eintrags verfügbar.

Zusammenfassung

Quantum two-level systems interacting with the surroundings are ubiquitous in nature. The interaction suppresses quantum coherence and forces the system towards a steady state. Such dissipative processes are captured by the paradigmatic spin-boson model, describing a two-state particle, the “spin”, interacting with an environment formed by harmonic oscillators. A fundamental question to date is ...

Quantum two-level systems interacting with the surroundings are ubiquitous in nature. The interaction suppresses quantum coherence and forces the system towards a steady state. Such dissipative processes are captured by the paradigmatic spin-boson model, describing a two-state particle, the “spin”, interacting with an environment formed by harmonic oscillators. A fundamental question to date is to what extent intense coherent driving impacts a strongly dissipative system. Here we investigate experimentally and theoretically a superconducting qubit strongly coupled to an electromagnetic environment and subjected to a coherent drive. This setup realizes the driven Ohmic spin-boson model. We show that the drive reinforces environmental suppression of quantum coherence, and that a coherent-toincoherent transition can be achieved by tuning the drive amplitude. An out-of-equilibrium detailed balance relation is demonstrated. These results advance fundamental understanding of open quantum systems and bear potential for the design of entangled light-matter states.



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Details

DokumentenartArtikel
Titel eines Journals oder einer ZeitschriftNature Communications
Verlag:Nature
Band:9
Nummer des Zeitschriftenheftes oder des Kapitels:1
Seitenbereich:S. 1403
Datum11 April 2018
InstitutionenPhysik > Institut für Theoretische Physik > Lehrstuhl Professor Grifoni > Arbeitsgruppe Milena Grifoni
Identifikationsnummer
WertTyp
10.1038/s41467-018-03626-wDOI
Dewey-Dezimal-Klassifikation500 Naturwissenschaften und Mathematik > 500 Naturwissenschaften
500 Naturwissenschaften und Mathematik > 530 Physik
StatusVeröffentlicht
BegutachtetJa, diese Version wurde begutachtet
An der Universität Regensburg entstandenZum Teil
URN der UB Regensburgurn:nbn:de:bvb:355-epub-370828
Dokumenten-ID37082

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