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Excitations in the field-induced quantum spin liquid state of alpha-RuCl3

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arxiv 1706.07003 v1 pith:V6RBRT2Z submitted 2017-06-21 cond-mat.mtrl-sci cond-mat.str-el

classification cond-mat.mtrl-scicond-mat.str-el
keywords alpha-rucl3excitationsmagneticfield-inducedspinstateexhibitingfield
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The Kitaev model on a honeycomb lattice predicts a paradigmatic quantum spin liquid (QSL) exhibiting Majorana Fermion excitations. The insight that Kitaev physics might be realized in practice has stimulated investigations of candidate materials, recently including alpha-RuCl3. In all the systems studied to date, non-Kitaev interactions induce magnetic order at low temperature. However, in-plane magnetic fields of roughly 8 Tesla suppress the long-range magnetic order in alpha-RuCl3 raising the intriguing possibility of a field-induced QSL exhibiting non-Abelian quasiparticle excitations. Here we present inelastic neutron scattering in alpha-RuCl3 in an applied magnetic field. At a field of 8 Tesla, the spin waves characteristic of the ordered state vanish throughout the Brillouin zone. The remaining single dominant feature of the response is a broad continuum centered at the Gamma point, previously identified as a signature of fractionalized excitations. This provides compelling evidence that a field-induced QSL state has been achieved.

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  1. Electronic properties of {\alpha}-RuCl3 in proximity to graphene

    cond-mat.str-el 2019-08 conditional novelty 6.0 of 10

    In α-RuCl3/graphene heterostructures, DFT calculations predict charge transfer and tensile strain that metallize α-RuCl3 and enhance its Kitaev coupling by more than 50% compared with bulk.

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