DOE OSTI · 1827104
Universal fluctuating regime in triangular chromate antiferromagnets
Abstract
In this work, we report x-ray diffraction, magnetic susceptibility, heat capacity, 1 H nuclear magnetic resonance (NMR), and muon spin relaxation (μSR) measurements, as well as density-functional band-structure calculations for the frustrated S=3/2 triangular lattice Heisenberg antiferromagnet (TLHAF) α-HCrO 2 (trigonal, space group: $R\bar{3}m$). This compound undergoes a clear magnetic transition at T N ≃22.5 K, as seen from the drop in the muon paramagnetic fraction and concurrent anomalies in the magnetic susceptibility and specific heat capacity. Local probes (NMR and μSR) reveal a broad regime with slow fluctuations down to 0.7T N , this temperature corresponding to the maximum in the μSR relaxation rate and in the NMR wipe-out. From the comparison with NaCrO 2 and α-KCrO 2 , the fluctuating regime and slow dynamics below T N appear to be hallmarks of the TLHAF with ABC stacking. We discuss the role of interlayer frustration, which may have impacted recent spin-liquid candidates with triangular geometry.
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Somesh, K., Furukawa, Y., Simutis, G., Bert, F., Prinz-Zwick, M., Büttgen, N., Zorko, A., Tsirlin, A. A., Mendels, P., Nath, R.. 2021-09-22. Universal fluctuating regime in triangular chromate antiferromagnets. https://doi.org/10.1103/physrevb.104.104422
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