首页> 外文期刊>Journal of the Physical Society of Japan >Specific heat of the S = 1=2 Two-Dimensional Shastry-Sutherland antiferromagnet SrCu_2(BO_3)_2 in high magnetic fields
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Specific heat of the S = 1=2 Two-Dimensional Shastry-Sutherland antiferromagnet SrCu_2(BO_3)_2 in high magnetic fields

机译:S = 1 = 2二维Shastry-Sutherland反铁磁体SrCu_2(BO_3)_2的比热在强磁场中

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摘要

We characterize the field-induced magnetic phases of SrCu _2(BO_3)_2, a frustrated spin-1/2 Heisenberg antiferromagnet in the two-dimensional Shastry-Sutherland lattice, using specific heat in magnetic fields up to 33 T. We find that the spin gap persists above the expected critical field H_c = δ=gμ_B of 21 T despite the appearance of magnetic moment in the ground state. At the magnetization plateau at 1/8 of the saturation, the triplets that carry the magnetization of the ground state are observed to form a two-dimensional gas of large mass. A gas consisting of the same number of heavy particles continues to completely dominate the specific heat in the field region above the plateau, although the magnetization increases with increasing field. Ordering is observed immediately below the temperature region of the gas phase.
机译:我们在磁场达33 T的情况下使用比热,对二维Shastry-Sutherland晶格中SrCu _2(BO_3)_2(受挫的自旋1/2 Heisenberg反铁磁体)的场致磁相进行了表征。尽管在基态中出现了磁矩,但自旋间隙仍保持在21 T的预期临界场H_c =δ=gμ_B之上。在饱和度的1/8的磁化平稳期,观察到携带基态磁化的三重态形成了质量较大的二维气体。尽管磁化强度随磁场的增加而增加,但由相同数量的重粒子组成的气体仍继续完全控制高原上方磁场区域中的比热。在气相温度区域以下立即观察到有序。

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