| Literature DB >> 26875693 |
E J Wildman1, A C Mclaughlin1.
Abstract
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 P4/nmm 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.Entities:
Year: 2016 PMID: 26875693 PMCID: PMC4753427 DOI: 10.1038/srep20705
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Magnetoresistance data as a function of temperature and field for NdMnAsO0.95F0.05.
A MR of −90% at 4 K, 7 T is observed. The inset shows the variation of MR with field at 4 K.
Figure 2Crystal Structure of NdMnAsO0.95F0.05.
The (NdO/F)+ and (MnAs)− slabs are labelled.
Figure 3Rietveld refinement fits to the 290 K and 4 K ID31 synchrotron X-ray powder diffraction patterns of NdMnAsO0.95F0.05.
The 290 K and 4 K Rietveld refinement fits are shown in (a) and (b) respectively. Tick marks represent reflection positions for NdMnAsO0.95F0.05 and MnAs minor impurity phase from bottom to top respectively.
Refined cell parameters, agreement factors, atomic parameters and selected bond lengths and angles for NdMnAsO0.95F0.05 from Rietveld fits against X-ray synchrotron data at various temperatures.
Nd and As are at 2c (1/4, 1/4, z), Mn at 2b (3/4, 1/4, 1/2) and O,F at 2a (3/4, 1/4, 0).
Figure 4Temperature variation of refined cell parameters and c/a ratio.
A subtle discontinuity is observed at T in the temperature variation of a and c/a. This anomaly is not observed in the temperature dependence of the c cell parameter.
Figure 5The temperature dependence of the Mn-As and Nd-O bond lengths.
A reduction in both bond lengths is observed upon cooling to 4 K.