Power-law dynamics in the spin-liquid kagome lattices SrCr8Ga4O19 and ZnCu3(OH)(6)Cl-2

PHYSICAL REVIEW B(2022)

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摘要
We consider the polarization function P-Z(exp)(t) measured by the muon-spin relaxation (mu SR) technique for the SrCr8Ga4O19 and ZnCu3(OH)(6)Cl-2 spin-liquid systems. We show the functional form of P-Z(exp)(t) to imply that, in the temperature range of order 0.1 K, the spectral-weight function F(omega) of the magnetic correlations scales with 1/vertical bar omega vertical bar(1-x)(0 < x < 1) in the energy range of h omega approximate to 1 mu eV. We derive the parameters involved in F(omega) from fits to available experimental data. Inelastic neutron scattering data probing F(omega) in the millielectronvolt energy range are consistent with a more conventional behavior. These differences could be due to a variety of spin-dynamics mechanisms, i.e., intrinsic to the kagome layer or related to the magnetic defects that have been evidenced in these compounds, acting at different energies. New mu SR measurements are proposed and theoretical developments are suggested to pinpoint the mechanisms at play.
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