Homogeneous reduced moment in a gapful scalar chiral kagome antiferromagnet
Author(s): Scheie, A; Dasgupta, S; Sanders, M; Sakai, A; Matsumoto, Y; et al
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Abstract: | We present a quantitative experimental investigation of the scalar chiral magnetic order with in Nd3Sb3Mg2O14. Static magnetization reveals a net ferromagnetic ground state, and inelastic neutron scattering from the hyperfine coupled nuclear spin reveals a local ordered moment of 1.76(6) 𝜇𝐵, just 61(2)% of the saturated moment size. The experiments exclude static disorder as the source of the reduced moment. A 38(1)𝜇eV gap in the magnetic excitation spectrum inferred from heat capacity rules out thermal fluctuations and suggests a multipolar explanation for the moment reduction. We compare Nd3Sb3Mg2O14 to Nd pyrochlores and show that Nd2Zr2O7 is in a spin fragmented state using nuclear Schottky heat capacity. |
Publication Date: | 12-Jul-2019 |
Electronic Publication Date: | 12-Jul-2019 |
Citation: | Scheie, A, Dasgupta, S, Sanders, M, Sakai, A, Matsumoto, Y, Prisk, TR, Nakatsuji, S, Cava, RJ, Broholm, C. (Homogeneous reduced moment in a gapful scalar chiral kagome antiferromagnet. Physical Review B, 100 (2), 10.1103/physrevb.100.024414 |
DOI: | doi:10.1103/physrevb.100.024414 |
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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