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Magnetic properties and spin dynamics of (Zn<sub>0.15</sub>Cu<sub>1.85</sub>)V<sub>2</sub>O<sub>7</sub>

ORAL

Abstract

Magnetic properties of (Zn0.15Cu1.85)V2O7 have been investigated on powder and single crystal samples using magnetization and neutron scattering measurements. The nuclear structure of (Zn0.15Cu1.85)V2O7 resembles that of monoclinic β-Cu2V2O7. Based on DFT calculations [PRB 82, 144416 (2010)], the spin couplings of these systems were found to topologically form a 2D honeycomb spin network. Combined magnetic susceptibility and power neutron diffraction suggest that the spins are co-aligned antiparallel along the crystallographic c-axis. Quantum Monte Carlo simulations based on the proposed honeycomb model with the dominant 5th and 6th nearest-neighbor exchange interactions provide a good fit to the magnetic susceptibility data. Inelastic neutron scattering data show the absence of nonreciprocal magnons, which were observed in the cousin phase of the noncentrosymmetric magnet α-Cu2V2O7 [PRL 119, 047201 (2017)]. The disappearance of the nonreciprocal magnons in (Zn0.15Cu1.85)V2O7 and presumably β-Cu2V2O7 can be explained by the absence of the Dzyaloshinskii-Moriya interaction.  In addition, the magnon dispersion is consistent with the proposed honeycomb spin model.

Presenters

  • Ganatee Gitgeatpong

    Phranakhon Rajabhat University

Authors

  • Ganatee Gitgeatpong

    Phranakhon Rajabhat University

  • Yang Zhao

    University of Maryland, College Park

  • Kittiwit Matan

    Mahidol University

  • Pakornsak Saeun

    Mahidol University

  • Taku J Sato

    IMRAM, Tohoku University, Tohoku University

  • Pharit Piyawongwatthana

    IMRAM, Tohoku University, Tohoku University, Tohoku Unicersity