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首页> 外文期刊>International Journal of Quantum Chemistry >Specific heat of antiferromagnetic-like TbB41Si1.2, a B-12 icosahedral boron-rich compound
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Specific heat of antiferromagnetic-like TbB41Si1.2, a B-12 icosahedral boron-rich compound

机译:B-12二十面体富硼化合物TbB41Si1.2反铁磁的比热

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摘要

A detailed measurement of the specific heat of the Bit icosahedral compound TbB41Si1.2 was made. TbB41Si1.2 crystals were grown by the floating zone method. Magnetic susceptibility measurements indicated that an antiferromagnetic-like transition occurs at 18 K in these crystals. TbB50 and isostructural TbB41Si1.2 are the first higher borides in which a magnetic transition was observed to occur. A hump in the specific heat is observed below 20 K, supporting the conclusion that a magnetic transition occurs in this system. An interesting magnetic field dependence was observed. Near the metamagnetic critical field of 31 kG, determined from magnetization measurements, the hump shifts to lower temperatures approaching 0 K, At 40 kG no hump is apparent. However, on further increasing the magnetic field to 55 and 70 kG, a new hump in the specific heat appears, indicating the possibility of the existence of an additional transition at high fields. Magnetization measurements of REB50 (RE = Tb, Dy, Ho, Er) up to 55 kG showed that the compounds saturated universally at around only half the saturation magnetization value of free rare-earth ions, which also indicated the likelihood of a further transition, The structure of the REB50-type compounds has a one-dimensional character with the rare-earth atoms forming an alternating bond length chain along the c-axis. These results are quite interesting in the context with the recent high activity in Haldane gap related compounds in which fundamental quantum phenomena are observed. (C) 2000 Academic Press. [References: 9]
机译:进行了Bit二十面体化合物TbB41Si1.2的比热的详细测量。通过浮区法生长TbB41Si1.2晶体。磁化率测量表明这些晶体在18 K处会出现类似反铁磁的转变。 TbB50和同构TbB41Si1.2是观察到发生磁转变的第一个较高的硼化物。在20 K以下观察到了比热的驼峰,支持了在该系统中发生磁转变的结论。观察到有趣的磁场依赖性。根据磁化强度测量结果确定,在31 kG的亚磁临界场附近,驼峰移至接近0 K的较低温度。在40 kG时,没有明显的驼峰。但是,在将磁场进一步增加到55 kG和70 kG时,比热出现了新的驼峰,这表明在高磁场下可能存在额外的跃迁。高达55 kG的REB50(RE = Tb,Dy,Ho,Er)的磁化测量表明,化合物普遍仅在游离稀土离子饱和磁化值的一半左右饱和,这也表明了进一步过渡的可能性, REB50型化合物的结构具有一维特征,稀土原子沿c轴形成交替的键长链。这些结果与最近在Haldane间隙相关化合物中的高活性有关,在其中观察到基本量子现象,这是非常有趣的。 (C)2000年学术出版社。 [参考:9]

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