4.6 Article

Pressure-induced dimerization and collapse of antiferromagnetism in the Kitaev material α-Li2IrO3

Journal

PHYSICAL REVIEW B
Volume 105, Issue 5, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.105.054412

Keywords

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Funding

  1. German Research Foundation (DFG) [107745057 (TRR80)]
  2. German Research Foundation (DFG) via Sino-German Cooperation Group on Emergent Correlated Matter
  3. Russian Science Foundation [21-72-10136]
  4. Russian Science Foundation [21-72-10136] Funding Source: Russian Science Foundation

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Magnetization measurements were performed on α-Li2IrO3 under hydrostatic pressures, and the temperature-pressure phase diagram was established. The material undergoes a first-order phase transition from a magnetic phase to a nonmagnetic dimerized phase above 1.2 GPa. The critical pressure of the structural dimerization shows strong temperature dependence.
We present magnetization measurements carried out on polycrystalline and single-crystalline samples of alpha-Li2IrO3 under hydrostatic pressures up to 2 GPa and establish the temperature-pressure phase diagram of this material. The Neel temperature (T-N) of alpha-Li2IrO3 is slightly enhanced upon compression with dT(N)/dp = 1.5 K/GPa. Above 1.2 GPa, alpha-Li2IrO3 undergoes a first-order phase transition toward a nonmagnetic dimerized phase, with no traces of the magnetic phase observed above 1.8 GPa at low temperatures. The critical pressure of the structural dimerization is strongly temperature dependent. This temperature dependence is well reproduced on the ab initio level by taking into account lower phonon entropy in the nonmagnetic phase. We further show that the initial increase in T-N of the magnetic phase is due to a weakening of the Kitaev interaction K along with the enhancement of the Heisenberg term J and off-diagonal anisotropy Gamma. Our study reveals a common thread in the interplay of magnetism and dimerization in pressured Kitaev materials.

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