Iron-based superconductivity develops near an antiferromagnetic order and out of a bad metal normal state, which has been interpreted as originating from a proximate Mott transition. Whether an actual Mott insulator can be realized in the phase diagram of the iron pnictides remains an open question. Here we use transport, transmission electron microscopy, X-ray absorption spectroscopy, and neutron scattering to demonstrate that NaFe1−xCuxAs near x≈0.5 exhibits real space Fe and Cu ordering, and are antiferromagnetic insulators with the insulating behavior persisting above the N\'eel temperature, indicative of a Mott insulator. Upon decreasing x from 0.5, the antiferromagnetic ordered moment continuously decreases, yielding to superconductivity around x=0.05. Our discovery of a Mott insulating state in NaFe1−xCuxAs thus makes it the only known Fe-based material in which superconductivity can be smoothly connected to the Mott insulating state, highlighting the important role of electron correlations in the high-Tc superconductivity.
@article{arxiv.1504.05116,
title = {A Mott insulator continuously connected to iron pnictide superconductors},
author = {Yu Song and Zahra Yamani and Chongde Cao and Yu Li and Chenglin Zhang and Justin Chen and Qingzhen Huang and Hui Wu and Jing Tao and Yimei Zhu and Wei Tian and Songxue Chi and Huibo Cao and Yao-Bo Huang and Marcus Dantz and Thorsten Schmitt and Rong Yu and Andriy H. Nevidomskyy and Emilia Morosan and Qimiao Si and Pengcheng Dai},
journal= {arXiv preprint arXiv:1504.05116},
year = {2016}
}
Comments
in press, Nat. Commun., 4 figures, supplementary information available upon request