English

Field-induced intermediate phase in $\alpha$-RuCl$_3$: Non-coplanar order, phase diagram, and proximate spin liquid

Strongly Correlated Electrons 2021-05-19 v2

Abstract

Frustrated magnets with strong spin-orbit coupling promise to host topological states of matter, with fractionalized excitations and emergent gauge fields. Kitaev's proposal for a honeycomb-lattice Majorana spin liquid has triggered an intense search for experimental realizations, with bond-dependent Ising interaction being the essential building block. A prime candidate is α\alpha-RuCl3_3 whose phase diagram in a magnetic field is, however, not understood to date. Here we present conclusive experimental evidence for a novel field-induced ordered phase in α\alpha-RuCl3_3, sandwiched between the zigzag and quantum disordered phases at low and high fields, respectively. We provide a detailed theoretical study of the relevant effective spin model which we show to display a field-induced intermediate phase as well. We fully characterize the intermediate phase within this model, including its complex spin structure, and pinpoint the parameters relevant to α\alpha-RuCl3_3 based on the experimentally observed critical fields. Most importantly, our study connects the physics of α\alpha-RuCl3_3 to that of the Kitaev-Γ\Gamma model, which displays a quantum spin liquid phase in zero field, and hence reveals the spin liquid whose signatures have been detected in a variety of dynamical probes of α\alpha-RuCl3_3.

Keywords

Cite

@article{arxiv.1807.06192,
  title  = {Field-induced intermediate phase in $\alpha$-RuCl$_3$: Non-coplanar order, phase diagram, and proximate spin liquid},
  author = {P. Lampen-Kelley and L. Janssen and E. C. Andrade and S. Rachel and J. -Q. Yan and C. Balz and D. G. Mandrus and S. E. Nagler and M. Vojta},
  journal= {arXiv preprint arXiv:1807.06192},
  year   = {2021}
}

Comments

This article is superseded by arXiv:2012.15258, which presents neutron diffraction data obtained after this preprint was posted. This data revealed that the intermediate ordered state is characterized by a different periodicity in the direction perpendicular to the honeycomb layers requiring a 3D model