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      Multiple Coulomb phase in the fluoride pyrochlore CsNiCrF6

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          Recent advances in magnetic structure determination by neutron powder diffraction

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            Geometrical Frustration in the Ferromagnetic PyrochloreHo2Ti2O7

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              Magnetic Monopoles in Spin Ice

              Electrically charged particles, such as the electron, are ubiquitous. By contrast, no elementary particles with a net magnetic charge have ever been observed, despite intensive and prolonged searches. We pursue an alternative strategy, namely that of realising them not as elementary but rather as emergent particles, i.e., as manifestations of the correlations present in a strongly interacting many-body system. The most prominent examples of emergent quasiparticles are the ones with fractional electric charge e/3 in quantum Hall physics. Here we show that magnetic monopoles do emerge in a class of exotic magnets known collectively as spin ice: the dipole moment of the underlying electronic degrees of freedom fractionalises into monopoles. This enables us to account for a mysterious phase transition observed experimentally in spin ice in a magnetic field, which is a liquid-gas transition of the magnetic monopoles. These monopoles can also be detected by other means, e.g., in an experiment modelled after the celebrated Stanford magnetic monopole search.
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                Author and article information

                Journal
                Nature Physics
                Nature Phys
                Springer Nature America, Inc
                1745-2473
                1745-2481
                October 22 2018
                Article
                10.1038/s41567-018-0309-3
                c8a9894d-5dc1-46d8-b968-09c25a21cae4
                © 2018

                http://www.springer.com/tdm

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