English

Electronic structure of the iron-based superconductor LaOFeP

Superconductivity 2009-02-08 v1

Abstract

The recent discovery of superconductivity in the so-called iron-oxypnictide family of compounds has generated intense interest. The layered crystal structure with transition metal ions in planar square lattice form and the discovery of spin-density-wave order near 130 K seem to hint at a strong similarity with the copper oxide superconductors. A burning current issue is the nature of the ground state of the parent compounds. Two distinct classes of theories have been put forward depending on the underlying band structures: local moment antiferromagnetic ground state for strong coupling approach and itinerant ground state for weak coupling approach. The local moment magnetism approach stresses on-site correlations and proximity to a Mott insulating state and thus the resemblance to cuprates; while the latter approach emphasizes the itinerant electron physics and the interplay between the competing ferromagnetic and antiferromagnetic fluctuations. Such a controversy is partly due to the lack of conclusive experimental information on the electronic structures. Here we report the first angle-resolved photoemission spectroscopy (ARPES) investigation of LaOFeP (Tc = 5.9 K), the first reported iron-based superconductor. Our results favor the itinerant ground state, albeit with band renormalization. In addition, our data reveal important differences between these and copper based superconductors.

Keywords

Cite

@article{arxiv.0807.2009,
  title  = {Electronic structure of the iron-based superconductor LaOFeP},
  author = {D. H. Lu and M. Yi and S. -K. Mo and A. S. Erickson and J. Analytis and J. -H. Chu and D. J. Singh and Z. Hussain and T. H. Geballe and I. R. Fisher and Z. -X. Shen},
  journal= {arXiv preprint arXiv:0807.2009},
  year   = {2009}
}

Comments

17 pages, 4 figures

R2 v1 2026-06-21T10:59:57.617Z