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Room-Temperature Low-Field Colossal Magnetoresistance in Double-Perovskite Manganite

机译:双钙钛矿锰矿的室温低场大磁阻

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摘要

We have discovered room-temperature low-field colossal magnetoresistance (CMR) in an A-site ordered NdBaMn2O6 crystal. The resistance changes more than 2 orders of magnitude at a magnetic field lower than 2 T near 300 K. When the temperature and magnetic field sweep from an insulating (metallic) phase to a metallic (insulating) phase, the insulating (metallic) conduction changes to the metallic (insulating) conduction within 1 K and 0.5 T, respectively. The CMR is ascribed to the melting of the charge and orbital ordering. The entropy change which is estimated from the B-T phase diagram is smaller than what is expected for the charge and orbital ordering. The suppression of the entropy change is attributable to the loss of the short-range ferromagnetic fluctuation of Mn spin moments, which is an important key of the high temperature and low magnetic field CMR effect.
机译:我们已经在A站点订购的NdBaMn2O6晶体中发现了室温低场大磁阻(CMR)。在300 K附近的低于2 T的磁场下,电阻变化超过2个数量级。当温度和磁场从绝缘(金属)相扫描到金属(绝缘)相时,绝缘(金属)传导发生变化分别在1 K和0.5 T之内的金属(绝缘)传导。 CMR归因于电荷的熔化和轨道的有序性。从B-T相图估计的熵变化小于对电荷和轨道排序的预期变化。熵变的抑制归因于Mn自旋矩的短程铁磁波动的损失,这是高温低磁场CMR效应的重要关键。

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  • 来源
    《Physical review letters》 |2019年第12期|126602.1-126602.6|共6页
  • 作者单位

    Yokohama City Univ Dept Mat Syst Sci Yokohama Kanagawa 2360027 Japan;

    Univ Tokyo Dept Adv Mat Sci Kashiwa Chiba 2778561 Japan;

    High Energy Accelerator Res Org Inst Mat Struct Sci Tsukuba Ibaraki 3050801 Japan|Grad Univ Adv Studies Dept Mat Struct Sci Tsukuba Ibaraki 3050801 Japan;

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