Modeling Yb<sub>2</sub>Be<sub>2</sub>GeO<sub>7</sub> on a Shastry Sutherland Lattice to Investigate Broad Spectral Features

ORAL

Abstract

Yb2Be2GeO7 is a magnetic Mott insulator with a 2D Shastry Sutherland Lattice (SSL) of Yb3+ (S=1/2) ions. This material shows no ordering down to 300mK and is a potential quantum spin liquid candidate. Inelastic neutron scattering (INS) has revealed a low energy spectrum with broad features possibly indicating fractionalization of magnons. Further, a narrow non-dispersive band of excitations is found to rise linearly in an applied magnetic field. In order to address these puzzles, we fit thermodynamic data to determine the exchange interactions to model the system using exact diagonalization. Magnetization, susceptibility, and heat capacity are used to find both the magnitude and sign of Heisenberg and Ising interactions on the nearest neighbor and diagonal bonds. We calculate the dynamical structure factor and compare with the INS low energy spectrum.

*Funding for this research was provided by the OSU Center for Emergent Materials: an NSF MRSEC under award number DMR-2011876.

Presenters

  • Oleksandr Molchanov

    • Ohio State University

Authors

  • Oleksandr Molchanov

    • Ohio State University
  • Matthew Ennis

    • Duke University
  • Rabindranath Bag

    • Duke University
  • Sara Haravifard

    • Duke University
  • Nandini Trivedi

    • Ohio State University