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- W2029790429 abstract "The magnetic nature of the cobalt oxide spinel Co3O4 has been studied under hydrostatic pressure up to 1.34 GPa by means of zero field (ZF) and weak transverse field (wTF) μ+SR techniques using a polycrystalline sample. At ambient pressure, Co3O4 enters into an antiferromagnetic (AF) phase below 30 K, as evidenced by two distinct spontaneous muon-spin precessions in its ZF spectrum. wTF measurements show that AF transition temperature (TN) clearly increases with increasing pressure. Since only the Co2+ ions at the tetrahedral site (A site) in the spinel lattice are magnetic, this indicates that the AF interaction between the Co2+ ions at A site is enhanced by applying pressure through the decrease in the distance between the adjacent A-site ions. On the other hand, ZF measurements show that the frequency of spontaneous muon-spin precession is almost independent of pressure. This could suggest that the AF structure is not altered by pressure at least up to 1.34 GPa." @default.
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- W2029790429 date "2009-04-01" @default.
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- W2029790429 title "High pressure study on cobalt oxide spinel" @default.
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- W2029790429 doi "https://doi.org/10.1016/j.physb.2008.11.105" @default.
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