4.7 Article

Broken selection rule in the quantum Rabi model

期刊

SCIENTIFIC REPORTS
卷 6, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep26720

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资金

  1. NSERC, Canada Foundation for Innovation, Ontario Ministry of Research and Innovation and Industry Canada
  2. Spanish MINECO [FIS2012-36673-C03-02, FIS2015-69983-P]
  3. Basque Government grant [IT472-10]
  4. UPV/EHU grant [UFI 11/55]
  5. PROMISCE EU project
  6. SCALEQIT EU project
  7. Fondo Nacional de Desarrollo Cientifico y Tecnologico (FONDECYT, Chile) [1150653]

向作者/读者索取更多资源

Understanding the interaction between light and matter is very relevant for fundamental studies of quantum electrodynamics and for the development of quantum technologies. The quantum Rabi model captures the physics of a single atom interacting with a single photon at all regimes of coupling strength. We report the spectroscopic observation of a resonant transition that breaks a selection rule in the quantum Rabi model, implemented using an LC resonator and an artificial atom, a superconducting qubit. The eigenstates of the system consist of a superposition of bare qubit-resonator states with a relative sign. When the qubit-resonator coupling strength is negligible compared to their own frequencies, the matrix element between excited eigenstates of different sign is very small in presence of a resonator drive, establishing a sign-preserving selection rule. Here, our qubit-resonator system operates in the ultrastrong coupling regime, where the coupling strength is 10% of the resonator frequency, allowing sign-changing transitions to be activated and, therefore, detected. This work shows that sign-changing transitions are an unambiguous, distinctive signature of systems operating in the ultrastrong coupling regime of the quantum Rabi model. These results pave the way to further studies of sign-preserving selection rules in multiqubit and multiphoton models.

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