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High-Field Quantum Disordered State in α-RuCl3: Spin Flips, Bound States, and a Multi-Particle Continuum

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arxiv 1908.11617 v1 pith:7XVE5MXI submitted 2019-08-30 cond-mat.str-el

High-Field Quantum Disordered State in α-RuCl3: Spin Flips, Bound States, and a Multi-Particle Continuum

classification cond-mat.str-el
keywords continuumphasequantumramanstatealphabounddisordered
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Layered $\alpha$-RuCl3 has been discussed as a proximate Kitaev spin liquid compound. Raman and THz spectroscopy of magnetic excitations confirm that the low-temperature antiferromagnetic ordered phase features a broad Raman continuum, together with two magnon-like excitations at 2.7 and 3.6 meV, respectively. The continuum strength is maximized as long-range order is suppressed by an external magnetic field. The state above the field-induced quantum phase transition around 7.5 T is characterized by a gapped multi-particle continuum out of which a two-particle bound state emerges, together with a well-defined single-particle excitation at lower energy. Exact diagonalization calculations demonstrate that Kitaev and off-diagonal exchange terms in the Fleury-Loudon operator are crucial for the occurrence of these features in the Raman spectra. Our study firmly establishes the partially-polarized quantum disordered character of the high-field phase.

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