Please use this identifier to cite or link to this item: http://doi.org/10.25358/openscience-38
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dc.contributor.authorWolz, Tim-
dc.contributor.authorStehli, Alexander-
dc.contributor.authorSchneider, Andre-
dc.contributor.authorBoventer, Isabella-
dc.contributor.authorMacêdo, Rair-
dc.contributor.authorUstinov, Alexey V.-
dc.contributor.authorKläui, Mathias-
dc.contributor.authorWeides, Martin-
dc.date.accessioned2020-03-02T11:28:43Z-
dc.date.available2020-03-02T12:28:43Z-
dc.date.issued2020-
dc.identifier.urihttps://openscience.ub.uni-mainz.de/handle/20.500.12030/40-
dc.description.abstractBy connecting light to magnetism, cavity magnon-polaritons (CMPs) can link quantum computation to spintronics. consequently, cmp-based information processing devices have emerged over the last years, but have almost exclusively been investigated with single-tone spectroscopy. however, universal computing applications will require a dynamic and on-demand control of the cmp within nanoseconds. here, 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. we first evidence dynamic control over the appearance of magnon-rabi oscillations, i.e., energy exchange, and second, energy extraction by applying an anti-phase drive to the magnon. our results show a promising approach to control building blocks valuable for a quantum internet and pave the way for future magnon-based quantum computing research. by connecting light and magnetism, the cavity magnon-polariton offers a link between quantum computing and spintronics. here, an important step towards this goal is achieved by demonstrating a dynamic control over both subsystems with coherent microwave pulses on nanosecond timescales.en_GB
dc.language.isoeng-
dc.rightsInCopyrightde_DE
dc.rights.urihttps://rightsstatements.org/vocab/InC/1.0/-
dc.subject.ddc530 Physikde_DE
dc.subject.ddc530 Physicsen_GB
dc.titleIntroducing coherent time control to cavity magnon-polariton modesen_GB
dc.typeZeitschriftenaufsatzde_DE
dc.identifier.urnurn:nbn:de:hebis:77-publ-595772-
dc.identifier.doihttp://doi.org/10.25358/openscience-38-
jgu.type.dinitypearticle-
jgu.type.versionAccepted versionen_GB
jgu.type.resourceText-
jgu.organisation.departmentFB 08 Physik, Mathematik u. Informatik-
jgu.organisation.number7940-
jgu.organisation.nameJohannes Gutenberg-Universität Mainz-
jgu.rights.accessrightsopenAccess-
jgu.journal.titleCommunications Physics-
jgu.journal.volume3-
jgu.pages.alternativeArt. 3-
jgu.publisher.year2020-
jgu.publisher.nameSpringer Nature-
jgu.publisher.placeLondon-
jgu.publisher.urihttp://dx.doi.org/10.1038/s42005-019-0266-x-
jgu.publisher.issn2399-3650-
jgu.organisation.placeMainz-
jgu.subject.ddccode530-
opus.date.accessioned2020-03-02T11:28:43Z-
opus.date.modified2020-03-23T11:23:46Z-
opus.date.available2020-03-02T12:28:43-
opus.subject.dfgcode00-000-
opus.organisation.stringFB 08: Physik, Mathematik und Informatik: Institut für Physikde_DE
opus.identifier.opusid59577-
opus.institute.number0801-
opus.metadataonlyfalse-
opus.type.contenttypeForschungsberichtde_DE
opus.type.contenttypeResearch Reporten_GB
opus.affiliatedKläui, Mathias-
jgu.publisher.doi10.1038/s42005-019-0266-x
jgu.organisation.rorhttps://ror.org/023b0x485
Appears in collections:JGU-Publikationen

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