English

Field-induced effects in the spin liquid candidate PbCuTe$_{2}$O$_{6}$

Strongly Correlated Electrons 2023-06-28 v2

Abstract

PbCuTe2_2O6_6 is considered as one of the rare candidate materials for a three-dimensional quantum spin liquid (QSL). This assessment was based on the results of various magnetic experiments, performed mainly on polycrystalline material. More recent measurements on single crystals revealed an even more exotic behavior, yielding ferroelectric order below TFE1KT_{\text{FE}}\approx 1\,\text{K}, accompanied by distinct lattice distortions, and a somewhat modified magnetic response which is still consistent with a QSL. Here we report on low-temperature measurements of various thermodynamic, magnetic and dielectric properties of single crystalline PbCuTe2_2O6_6 in magnetic fields B14.5TB\leq 14.5\,\text{T}. The combination of these various probes allows us to construct a detailed BB-TT phase diagram including a ferroelectric phase for BB \leq 8T8\,\text{T} and a BB-induced magnetic phase at BB \geq 11T11\,\text{T}. These phases are preceded by or coincide with a structural transition from a cubic high-temperature phase into a distorted non-cubic low-temperature state. The phase diagram discloses two quantum critical points (QCPs) in the accessible field range, a ferroelectric QCP at Bc1B_{c1} = 7.9T7.9\,\text{T} and a magnetic QCP at Bc2B_{c2} = 11T11\,\text{T}. Field-induced lattice distortions, observed in the state at T>T> 1K1\,\text{K} and which are assigned to the effect of spin-orbit interaction of the Cu2+^{2+}-ions, are considered as the key mechanism by which the magnetic field couples to the dielectric degrees of freedom in this material.

Keywords

Cite

@article{arxiv.2302.13774,
  title  = {Field-induced effects in the spin liquid candidate PbCuTe$_{2}$O$_{6}$},
  author = {Paul Eibisch and Christian Thurn and Arif Ata and Ulrich Tutsch and Yohei Saito and Steffi Hartmann and Bernd Wolf and Abanoub R. N. Hanna and A. T. M. Nazmul Islam and Shravani Chillal and Bella Lake and Michael Lang},
  journal= {arXiv preprint arXiv:2302.13774},
  year   = {2023}
}