Strain effects in α-RuCl<sub>3</sub> from first principles
ORAL
Abstract
In recent years, the ‘proximate’ Kitaev spin liquid candidate, α-RuCl3, is under active study for exploring ways to tune it out of the zigzag antiferromagnetic order. Hence, different routes to enhance magnetic Kitaev interaction in α-RuCl3 are pursued. First, we studied the effects of uniaxial strain in bulk α-RuCl3, when applied perpendicular to the honeymoon plane. In particular, we have explored the magnetoelastic coupling in α-RuCl3 and the dependence of magnetic coupling constants on strain effects. We find that Kitaev interaction gets strongly enhanced under compression. Secondly, we have explored another route of straining α-RuCl3: by a substrate, graphene (gr). Due to proximity effect and charge transfer, α-RuCl3 in the heterostructure system becomes lightly electron-doped, exhibiting insulator to metal transition. Quantum oscillation measurements of α-RuCl3/gr system show anomalous temperature dependence and we will discuss how to extract ab initio parameters for Kitaev-Kondo lattice modelling which can explain such anomaly.
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Presenters
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Sananda Biswas
Goethe University Frankfurt
Authors
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Sananda Biswas
Goethe University Frankfurt
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David Kaib
Goethe University Frankfurt
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Kira Riedl
Institute for Theoretical Physics, Goethe-Universitat Frankfurt, Goethe University Frankfurt
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Stephen Winter
Wake Forest University, Department of Physics, Wake Forest University
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Valentin Leeb
Technical University Munich
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Johannes Knolle
Technical University Munich, Physics TQM, Technische Universität München
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Roser Valenti
Goethe University Frankfurt, Goethe-Universität Frankfurt, Goethe University Frankfurt am Main, ITP, Goethe University Frankfurt, Institute for Theoretical Physics, Goethe-Universitat Frankfurt, Goethe-University Frankfurt, Institut für Theoretische Physik, Goethe University Frankfurt