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Magnetic Order and Dynamics: Neutron Scattering

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Part of the book series: Springer Series in Materials Science ((SSMATERIALS,volume 211))

Abstract

Soon after the discovery of iron pnictide superconductor LaFeAsO1−x F x with T c = 26 K [1], band calculations based on transport and optical conductivity measurements predicted the presence of a collinear antiferromagnetic (AF) [or spin-density-wave (SDW)] state in the parent compounds [2], which was subsequently confirmed by neutron scattering experiments [3].

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Acknowledgements

The single crystal growth and neutron scattering work at Rice on hole-doped iron pnictide superconductors is supported by the U.S. DOE BES under Grant No. DE-SC0012311. Work at IOP is supported by the MOST of China 973 programs (2012CB821400, 2011CBA00110) and NSFC. Neutron scattering work on electron-doped iron pnictides is supported by U.S. NSF DMR-1362219 and NSF DMR-1436006.

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Dai, P., Luo, H., Wang, M. (2015). Magnetic Order and Dynamics: Neutron Scattering. In: Johnson, P., Xu, G., Yin, WG. (eds) Iron-Based Superconductivity. Springer Series in Materials Science, vol 211. Springer, Cham. https://doi.org/10.1007/978-3-319-11254-1_5

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