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High pressure route to generate magnetic monopole dimers in spin ice

机译:在旋转冰中产生磁性单极二聚体的高压途径

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The gas of magnetic monopoles in spin ice is governed by one key parameter: the monopole chemical potential. A significant variation of this parameter could access hitherto undiscovered magnetic phenomena arising from monopole correlations, as observed in the analogous electrical Coulomb gas, like monopole dimerization, critical phase separation, or charge ordering. However, all known spin ices have values of chemical potential imposed by their structure and chemistry that place them deeply within the weakly correlated regime, where none of these interesting phenomena occur. Here we use high-pressure synthesis to create a new monopole host, Dy2Ge2O7, with a radically altered chemical potential that stabilizes a large fraction of monopole dimers. The system is found to be ideally described by the classic Debye–Huckel–Bjerrum theory of charge correlations. We thus show how to tune the monopole chemical potential in spin ice and how to access the diverse collective properties of magnetic monopoles.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:旋转冰中的磁性单极气体由一个关键参数控制:单极化学势。如在类似的库仑电气体中所观察到的那样,该参数的显着变化可以访问迄今尚未发现的由单极相关性引起的磁现象,例如单极二聚化,临界相分离或电荷排序。但是,所有已知的自旋冰都具有由其结构和化学性质决定的化学势值,这些值将它们深深地置于弱关联机制中,在这些机制中这些有趣的现象均未发生。在这里,我们使用高压合成方法创建了一个新的单极主体Dy 2 Ge 2 O 7 单极二聚体的很大一部分。发现该系统可以由经典的Debye-Huckel-Bjerrum电荷相关理论理想地描述。因此,我们展示了如何调整自旋冰中的单极化学势,以及如何访问磁性单极的各种集体性质。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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