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Magnetic ordering and spin-glass behaviour of carbon nanoclusters

机译:碳纳米总电器磁性排序和旋转玻璃行为

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Carbon nanoclusters produced by high-repetition-rate laser ablation of graphite and glassy carbon in Ar exhibits para- and ferromagnetic behaviour at low temperature. The results show that the degree of remanent order is strongly dependent on the magnetic history, i.e. whether the samples were cooled under zero-field or field conditions. Such behaviour is typical for a spin glass structure where the system can exist in many different roughly equivalent spin configurations. The spin-freezing temperature is unusually high (50 - 300 K) compared with ≤ 15 K for typical spin glasses. The maximum in the zero-field magnetic susceptibility experiments and their field dependence indicate that there is competition between ferromagnetic and antiferromagnetic exchange pathways, accounting for the spin glass behavior and/or a low-dimensionality of the system.
机译:通过高重复速率激光烧蚀石墨和玻璃碳产生的碳纳米能器在Ar中表现出低温下的糖磁性和铁磁性行为。 结果表明,剩余顺序的程度强烈依赖于磁历史,即样品是否在零场或现场条件下冷却。 这种行为对于自旋玻璃结构典型的行为,其中系统可以存在于许多不同的大致等同的自旋配置中。 与典型的旋转玻璃相比,旋转冷冻温度异常高(50-300k)与≤15k相比。 零场磁化率实验的最大值及其现场依赖性表明铁磁和反铁磁交换途径之间存在竞争,占旋转玻璃行为和/或系统的低维度。

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