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Quantum Simulation of the Fermion-Boson Composite Quasi-Particles with a Driven Qubit-Magnon Hybrid Quantum System

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arxiv 1903.12498 v1 pith:OR7MIXGA submitted 2019-03-29 quant-ph cond-mat.mes-hallcond-mat.supr-con

classification quant-phcond-mat.mes-hallcond-mat.supr-con
keywords quantumqubitsuperconductinghybridsystemcavitycompositecoupling
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We experimentally demonstrate strong coupling between the ferromagnetic magnons in a small yttrium-iron-garnet (YIG) sphere and the drive-field-induced dressed states of a superconducting qubit, which gives rise to the double dressing of the superconducting qubit. The YIG sphere and the superconducting qubit are embedded in a microwave cavity and the effective coupling between them is mediated by the virtual cavity photons. The theoretical results fit the experimental observations well in a wide region of the drive-field power resonantly applied to the superconducting qubit and reveal that the driven qubit-magnon hybrid quantum system can be harnessed to emulate a particle-hole-symmetric pair coupled to a bosonic mode. This hybrid quantum system offers a novel platform for quantum simulation of the composite quasi-particles consisting of fermions and bosons.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Steering between Level Repulsion and Attraction: Broad tunability of Two-Port Driven Cavity Magnon-Polaritons

    cond-mat.mes-hall 2019-08 conditional novelty 5.0 of 10

    A two-port drive with adjustable phase and amplitude continuously steers a cavity-magnon polariton between level repulsion and level attraction.

  2. Dispersive-induced magnon blockade with a superconducting qubit

    quant-ph 2025-04 conditional novelty 4.0 of 10

    Numerical simulations show magnon blockade, g^(2)(0) ≈ 0.04, in a strongly dispersive qubit-magnon system, caused by qubit-induced anharmonicity.

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