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Introducing coherent time control to cavity-magnon-polariton modes

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arxiv 1906.08103 v2 pith:NIEIXP67 submitted 2019-06-19 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords controlcoherentenergymodesquantumcomputingdifferentdynamic
verification ladder T0 review T1 audit T2 compute T3 formal

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By connecting light to magnetism, cavity-magnon-polaritons (CMPs) can build links from quantum computation to spintronics. As a consequence, CMP-based information processing devices have thrived over the last five years, but almost exclusively been investigated with single-tone spectroscopy. However, universal computing applications will require a dynamic control of the CMP on demand and within nanoseconds. In this work, we perform fast manipulations of the different CMP modes with independent but coherent pulses to the cavity and magnon system. We change the state of the CMP from the energy exchanging beat mode to its normal modes and further demonstrate two fundamental examples of coherent manipulation: First, a dynamic control over the appearance of magnon-Rabi oscillations, i.e., energy exchange, and second, a complete energy extraction by applying an anti-phase drive to the magnon. Our results show a promising approach to control different building blocks for a quantum internet and pave the way for further magnon-based quantum computing research.

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  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.

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