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Long-range antiferromagnetic order and possible field induced spin-flop transition in BiMnVO5

机译:远程反铁磁性顺序和BIMNVO5中可能的场诱导的旋转翻转过渡

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摘要

We report the bulk magnetic characterization of a dimeric chain material, BiMnVO5, by means of magnetic susceptibility, magnetization and heat capacity measurements. Our results provide compelling evidence of an antiferromagnetic (AFM) transition at (T-N) similar to 11.5 K. Moreover, the magnetic entropy change in zero field saturates to 14.6 J mol(-1) K-1 which is close to the total spin entropy of Mn2+. The development of long-range magnetic order in this chain material demonstrates the interplay of strong intra-chain and inter-chain interactions between the dimers, in addition to the intra-dimer interaction. Low-temperature (T < T-N) heat capacity data indicate the presence of a gap (Delta/k(B) approximate to 5 K) in the spin excitations. Furthermore, the isothermal magnetization below T-N shows an anomaly in the slope between 30 and 40 kOe which is suggestive of a spin-flop transition. Such a low-field spin-flop transition and gapped spin wave excitations may be attributed to the presence of (weak) magnetic anisotropy in this material. We attempt to construct a phase diagram in the magnetic field-temperature plane by extracting data from in-field heat capacity and isothermal magnetization measurements.
机译:我们通过磁化率,磁化和热容量测量报告二聚体链材料,BIMNVO5的体磁表征。我们的结果提供了与11.5K类似的(TN)的反铁磁性(AFM)过渡的令人信服的证据。此外,零场中的磁熵变化饱和至14.6JMOM(-1)K-1,靠近全旋熵Mn2 +。除了二聚体内相互作用之外,该链材料中的远程磁性顺序的开发证明了二聚体之间的强子内链和链间相互作用的相互作用。低温(T

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