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A Variable Temperature Synchrotron X-ray Diffraction Study of Colossal Magnetoresistant NdMnAsO0.95F0.05

机译:耐磁大NdMnAsO0.95F0.05的变温同步辐射X射线衍射研究

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摘要

The recent discovery of high temperature superconductivity in Fe arsenides has invigorated research into transition metal pnictides. Colossal magnetoresistance (CMR) has recently been reported for NdMnAsO1-xFx for x = 0.05–0.08, with a maximum magnetoresistance achieved at low temperature (MR9T(3 K)) = −95%). This appears to be a novel mechanism of CMR, which is as a result of a second order phase transition in field from an insulating antiferromagnet to a semiconducting paramagnet. Here we report a variable temperature synchrotron X-ray powder diffraction study of the CMR oxypnictide NdMnAsO0.95F0.05 between 4 K–290 K. An excellent fit to the tetragonal unit cell with space group P4mm is obtained over the entire temperature range, with no change in crystal structure detected down to 4 K. A coupling of the lattice and magnetic order is observed, where subtle discontinuities in the temperature variation of a and the c/a ratio are apparent as the Nd spins order antiferromagnetically and the Mn moments reorient into the basal plane at TSR. The results suggest that very small changes in lattice parameters effect the coupling between lattice, electronic and magnetic degrees of freedom.
机译:Fe砷化物中高温超导性的最新发现为过渡金属磷化物的研究注入了新的活力。最近报道了NdMnAsO1-xFx的大磁阻(CMR),x = 0.05-0.08,在低温下达到最大磁阻(MR9T(3 K))= -95%。这似乎是CMR的一种新颖机制,这是磁场中从绝缘反铁磁体到半导体顺磁体的二阶相变的结果。在这里,我们报道了在4 K–290 K之间对CMR氧NpMnAsO0.95F0.05进行的变温同步加速器X射线粉末衍射研究,在整个温度范围内都非常适合空间单元为P4 / nmm的四方晶胞。 ,直到4 K都没有检测到晶体结构的变化,观察到晶格和磁序的耦合,其中当nd自旋为反铁磁和Mn时,a的温度变化和c / a比的细微间断很明显。瞬间重新定向到TSR的基面。结果表明,晶格参数的很小变化会影响晶格,电子和磁自由度之间的耦合。

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