Nodal-to-nodeless superconducting order parameter in LaFeAsPO synthesized under high pressure
arXiv:1803.05733 · doi:10.1038/s41535-018-0099-y
Abstract
Similar to chemical doping, pressure produces and stabilizes new phases of known materials, whose properties may differ greatly from those of their standard counterparts. Here, by considering a series of LaFeAsPO iron-pnictides synthesized under high-pressure high-temperature conditions, we investigate the simultaneous effects of pressure and isoelectronic doping in the 1111 family. Results of numerous macro- and microscopic technique measurements, unambiguously show a radically different phase diagram for the pressure-grown materials, characterized by the lack of magnetic order and the persistence of superconductivity across the whole doping range. This unexpected scenario is accompanied by a branching in the electronic properties across , involving both the normal and superconducting phases. Most notably, the superconducting order parameter evolves from nodal (for ) to nodeless (for ), in clear contrast to other 1111 and 122 iron-based materials grown under ambient-pressure conditions.
9 pages, 7 figures, Suppl. material