English

Magnetic field-temperature phase diagram of spin-1/2 triangular lattice antiferromagnet KYbSe$_2$

Strongly Correlated Electrons 2024-12-31 v1 Materials Science

Abstract

A quantum spin liquid (QSL) is a state of matter characterized by fractionalized quasiparticle excitations, quantum entanglement, and a lack of long-range magnetic order. However, QSLs have evaded definitive experimental observation. Several Yb3+^{3+}-based triangular lattice antiferromagnets with effective SS = 12\frac{1}{2} have been suggested to stabilize the QSL state as the ground state. Here, we build a comprehensive magnetic temperature phase diagram of a high-quality single crystalline KYbSe2_2 via heat capacity and magnetocaloric effect down to 30 mK with magnetic field applied along the aa-axis. At zero magnetic field, we observe the magnetic long-range order at TNT_N = 0.29 K entering 120 degrees ordered state in heat capacity, consistent with neutron scattering studies. Analysis of the low-temperature (TT) specific heat (CC) at zero magnetic field indicates linear TT-dependence of C/TC/T and a broad hump of C/TC/T in the proximate QSL region above TNT_N. By applying magnetic field, we observe the up-up-down phase with 1/3 magnetization plateau and oblique phases, in addition to two new phases. These observations strongly indicate that while KYbSe2_2 closely exhibits characteristics resembling an ideal triangular lattice, deviations may exist, such as the effect of the next-nearest-neighbor exchange interaction, calling for careful consideration for spin Hamiltonian modeling. Further investigations into tuning parameters, such as chemical pressure, could potentially induce an intriguing QSL phase in the material.

Keywords

Cite

@article{arxiv.2402.06788,
  title  = {Magnetic field-temperature phase diagram of spin-1/2 triangular lattice antiferromagnet KYbSe$_2$},
  author = {Sangyun Lee and Andrew J. Woods and Minseong Lee and Shengzhi Zhang and Eun Sang Choi and A. O. Scheie and D. A. Tennant and J. Xing and A. S. Sefat and R. Movshovich},
  journal= {arXiv preprint arXiv:2402.06788},
  year   = {2024}
}