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Emergence of intra-particle entanglement and time-varying violation of Bell's inequality in Dirac matter

Bruna Gabrielly De Moraes Araújo, Aron Cummings, Stephan Roche

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    Resumen

    We demonstrate the emergence and dynamics of intraparticle entanglement in massless Dirac fermions. This entanglement, generated by spin-orbit coupling, arises between the spin and sublattice pseudospin of electrons in graphene. The entanglement is a complex dynamic quantity but is generally large, independent of the initial state. Its time dependence implies a dynamical violation of a Bell inequality, while its magnitude indicates that large intraparticle entanglement is a general feature of graphene on a substrate. These features are also expected to impact entanglement between pairs of particles, and may be detectable in experiments that combine Cooper pair splitting with nonlocal measurements of spin-spin correlation in mesoscopic devices based on Dirac materials.
    Idioma originalInglés
    PublicaciónPhysical Review B
    Volumen102
    N.º4
    DOI
    EstadoPublicada - 2020

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