paper

Antiferromagnetic resonance and terahertz continuum in RuCl

arXiv:1704.07357 · doi:10.1103/PhysRevLett.119.227201

Abstract

We report measurements of optical absorption in the zig-zag antiferromagnet -RuCl as a function of temperature, , magnetic field, , and photon energy, in the range 0.3 to 8.3 meV, using time-domain terahertz spectroscopy. Polarized measurements show that 3-fold rotational symmetry is broken in the honeycomb plane from 2 K to 300 K. We find a sharp absorption peak at 2.56 meV upon cooling below the Néel temperature of 7 K at that we identify as magnetic-dipole excitation of a zero-wavevector magnon, or antiferromagnetic resonance (AFMR). With application of , the AFMR broadens and shifts to lower frequency as long-range magnetic order is lost in a manner consistent with transitioning to a spin-disordered phase. From direct, internally calibrated measurement of the AFMR spectral weight, we place an upper bound on the contribution to the susceptibility from a magnetic excitation continuum.

5 pages, 3 figures in the main text. To appear in Phys. Rev. Lett., magnetic field data included. Supplementary information also included

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