Giant phonon anomalies in the proximate Kitaev quantum spin liquid α-RuCl<sub>3</sub>.

Li, Haoxiang; Zhang, T T; Said, A; Fabbris, G; Mazzone, D G; Yan, J Q; Mandrus, D; Halász, Gábor B et al. · Nat Commun · 2021

basic_science · Level V

Where this comes from

Abstract

The Kitaev quantum spin liquid epitomizes an entangled topological state, for which two flavors of fractionalized low-energy excitations are predicted: the itinerant Majorana fermion and the Z<sub>2</sub> gauge flux. It was proposed recently that fingerprints of fractional excitations are encoded in the phonon spectra of Kitaev quantum spin liquids through a novel fractional-excitation-phonon coupling. Here, we detect anomalous phonon effects in α-RuCl<sub>3</sub> using inelastic X-ray scattering with meV resolution. At high temperature, we discover interlaced optical phonons intercepting a transverse acoustic phonon between 3 and 7 meV. Upon decreasing temperature, the optical phonons display a large intensity enhancement near the Kitaev energy, J<sub>K</sub>~8 meV, that coincides with a giant acoustic phonon softening near the Z<sub>2</sub> gauge flux energy scale. These phonon anomalies signify the coupling of phonon and Kitaev magnetic excitations in α-RuCl<sub>3</sub> and demonstrates a proof-of-principle method to detect anomalous excitations in topological quantum materials.