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Counterroating Magnetic Order in the Honeycomb Layers of NaNi2BiO6βˆ’Ξ΄

Author(s): Scheie, A; Ross, K; Stavropoulos, P Peter; Seibel, E; Rodriguez-Rivera, JA; et al

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Abstract: We report the magnetic structure and electronic properties of the honeycomb antiferromagnet NaNi2⁒BiO5.66. We find magnetic order with moments along the 𝑐 axis for temperatures below 𝑇𝑐⁒1=6.3⁒(1)⁒K and then in the honeycomb plane for 𝑇<𝑇𝑐⁒2=4.8⁒(1)⁒K with a counterrotating pattern and an ordering wave vector πͺ=( 1 3 , 1 3 ,0.15⁒(1)). Density functional theory and electron spin resonance indicate this is high-spin Ni3+ magnetism near a high to low spin transition. The ordering wave vector, in-plane magnetic correlations, missing entropy, spin state, and superexchange pathways are all consistent with bond-dependent Kitaev-Ξ“-Heisenberg exchange interactions in NaNi2⁒BiO6βˆ’π›Ώ.
Publication Date: 18-Dec-2019
Electronic Publication Date: 18-Dec-2019
Citation: Scheie, A, Ross, K, Stavropoulos, P Peter, Seibel, E, Rodriguez-Rivera, JA, Tang, JA, Li, Yi, Kee, Hae-Young, Cava, RJ, Broholm, C. Counterroating Magnetic Order in the Honeycomb Layers of NaNi2BiO6βˆ’Ξ΄. Physical Review B, 100 (21), 10.1103/physrevb.100.214421
DOI: doi:10.1103/physrevb.100.214421
ISSN: 2469-9950
EISSN: 2469-9969
Language: en
Type of Material: Journal Article
Journal/Proceeding Title: Physical Review B
Version: Author's manuscript



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