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Implementation of a quantum metamaterial using superconducting qubits. | LitMetric

Implementation of a quantum metamaterial using superconducting qubits.

Nat Commun

1] Physikalisches Institut, Karlsruhe Institute of Technology, D-76131 Karlsruhe, Germany [2] Russian Quantum Center, 100 Novaya Street, Skolkovo, Moscow region 143025, Russia [3] National University of Science and Technology MISIS, Leninsky prosp. 4, Moscow 119049, Russia.

Published: October 2014

The key issue for the implementation of a metamaterial is to demonstrate the existence of collective modes corresponding to coherent oscillations of the meta-atoms. Atoms of natural materials interact with electromagnetic fields as quantum two-level systems. Artificial quantum two-level systems can be made, for example, using superconducting nonlinear resonators cooled down to their ground state. Here we perform an experiment in which 20 of these quantum meta-atoms, so-called flux qubits, are embedded into a microwave resonator. We observe the dispersive shift of the resonator frequency imposed by the qubit metamaterial and the collective resonant coupling of eight qubits. The realized prototype represents a mesoscopic limit of naturally occurring spin ensembles and as such we demonstrate the AC-Zeeman shift of a resonant qubit ensemble. The studied system constitutes the implementation of a basic quantum metamaterial in the sense that many artificial atoms are coupled collectively to the quantized mode of a photon field.

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Source
http://dx.doi.org/10.1038/ncomms6146DOI Listing

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