Kurchatov NBICS Centre, National Research Centre Kurchatov Institute, Moscow 123182, Russia.
J Phys Condens Matter. 2013 Mar 20;25(11):115601. doi: 10.1088/0953-8984/25/11/115601. Epub 2013 Feb 14.
Materials that exhibit colossal magnetoresistance (CMR) have attracted much attention due to their potential technological applications. One particularly interesting model for the magnetoresistance of low-carrier-density ferromagnets involves mediation by magnetic polarons (MP)-electrons localized in nanoscale ferromagnetic 'droplets' by their exchange interaction. However, MP have not previously been directly detected and their size has been difficult to determine from macroscopic measurements. In order to provide this crucial information, we have carried out muon spin rotation measurements on the magnetoresistive semiconductor Lu(2)V(2)O(7) in the temperature range from 2 to 300 K and in magnetic fields up to 7 T. Magnetic polarons with characteristic radius R ≈ 0.4 nm are detected below about 100 K, where Lu(2)V(2)O(7) exhibits CMR; at higher temperature, where the magnetoresistance vanishes, these MP also disappear. This observation confirms the MP-mediated model of CMR and reveals the microscopic size of the MP in magnetoresistive pyrochlores.
由于其潜在的技术应用,表现出庞磁电阻(CMR)的材料引起了广泛关注。对于低载流密度铁磁体的磁电阻,一个特别有趣的模型涉及通过磁极化子(MP)-通过交换相互作用在纳米级铁磁“液滴”中局部化的电子来介导。然而,MP 以前没有被直接检测到,并且它们的尺寸很难从宏观测量中确定。为了提供这一关键信息,我们在温度范围为 2 至 300 K 且磁场高达 7 T 的情况下,对磁阻半导体 Lu(2)V(2)O(7)进行了μ子自旋旋转测量。在大约 100 K 以下,Lu(2)V(2)O(7)表现出 CMR 的地方,检测到具有特征半径 R ≈ 0.4nm 的磁极化子;在温度较高、磁电阻消失的地方,这些 MP 也消失了。这一观察结果证实了 CMR 的 MP 介导模型,并揭示了磁阻 pyrochlores 中 MP 的微观尺寸。