Low-moment antiferromagnetic ordering in triply charged cubic fullerides close to the metal-insulator transition

Low-moment antiferromagnetic ordering in triply charged cubic fullerides close to the metal-insulator transition
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DOI:
10.1103/physrevb.80.195424
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发表时间:
2009-11-01
期刊:
影响因子:
3.7
通讯作者:
Prassides, K.
Prassides, K.
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Jeglic, P.;Arcon, D.;Prassides, K.

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本文报道了常压下无无序A15结构的Cs(3)C(60)的(13)C和(133)Cs NMR研究结果,表明其在38 K下具有非BCS超导性。与温度无关的(13)C和(133)Cs自旋-晶格弛豫速率证明了在T>100 K时具有小的有效磁矩1.3-1.6 μ(B)的绝缘基态。在46 K以下,A15 Cs(3)C(60)有序排列成反铁磁结构,最好用磁波矢量q=(1/2,1/2,1/2)来描述,其交错磁矩类似于每C(60)0.9 μ(B)。大的(U/W)比(类似于2.2)、电子激发光谱中的间隙的打开和小的C(60)(3-)磁矩都强调了A15 Cs(3)C(60)中电子相关性的重要性。
We report on the ambient pressure (13)C and (133)Cs NMR study of disorder-free A15-structured Cs(3)C(60), which shows non-BCS superconductivity at 38 K under pressure. Temperature-independent (13)C and (133)Cs spin-lattice relaxation rates prove an insulating ground state with a small effective magnetic moment 1.3-1.6 mu(B) for T>100 K. Below 46 K, A15 Cs(3)C(60) orders into an antiferromagnetic structure best described by a magnetic wave vector, q=(1/2, 1/2, 1/2) with a staggered magnetic moment similar to 0.9 mu(B) per C(60). The large (U/W) ratio (similar to 2.2), the opening of a gap in the electronic excitation spectrum and the small C(60)(3-) magnetic moment all underline the importance of electronic correlations in A15 Cs(3)C(60).