Journal of the Physical Society of Japan · 2022 · 22 citations · 23 references
Quantum LiquidCharge ExcitationsEngineeringBismuth-based SuperconductorsSpin SystemsQuantum Spin IceTopological Quantum StateSpin PhenomenonQuantum MaterialsMagnetic Topological InsulatorQuantum MatterQuantum SciencePhysicsSpecific HeatDistinct Topological PropertiesQuantum Field TheoryTopological PhaseCondensed Matter TheoryNatural SciencesApplied PhysicsCondensed Matter PhysicsQuantum DevicesQsl Phases
The Kitaev quantum spin liquid (QSL) on the two-dimensional honeycomb lattice epitomizes an entangled topological state, where the spins fractionalize into Majorana fermions. This state has aroused tremendous interest because it harbors non-Abelian anyon excitations. The half-integer quantized thermal Hall (HIQTH) conductance observed in $\alpha$-RuCl$_3$ is a key signature of these excitations. However, the fate of this topologically nontrivial state at intense fields remains largely elusive. Here, we report the thermal conductivity $\kappa$ and specific heat $C$ of $\alpha$-RuCl$_3$ with in-plane magnetic fields $H$. For the field direction perpendicular to the Ru-Ru bond, where the HIQTH effect is observed, we find a discontinuous jump in $\kappa(H)$ and a peak anomaly in $C(H)$ at $\mu_0H^*\approx11$\,T, evidencing a weak first-order phase transition. Remarkably, the HIQTH effect vanishes close to $H^*$. Furthermore, we find that the spin-fractionalization feature is retained well above $H^\ast$. These imply the emergence of the phase transition that separates two QSL phases with distinct topological properties.
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Spin liquids in frustrated magnets
Leon Balents · Nature · 2010 · 4.2K citations
Magnetism, Spintronics, Engineering +12
Proximate Kitaev quantum spin liquid behaviour in a honeycomb magnet
Nature Materials · 2016 · 913 citations · Full text
Proximate Kitaev Quantum Spin Liquid Behaviour in {\\alpha}-RuCl$_3$
Arnab Banerjee, Craig A. Bridges, Jiaqiang Yan et al. · arXiv (Cornell University) · 2015 · 852 citations · Full text