Paramagnetically driven superconducting re-entrance in Eu-doped infinite layer nickelates
Abstract
Abstract The breakthrough discovery of superconductivity in infinite-layer nickelates, and subsequently in several superconducting nickelates with more complex layered structures, capped a search spanning more than two decades and opened an entirely new field of research. Significant efforts aim to increase the critical temperature, to determine the electronic structure of the system, the underlying pairing mechanism, and the similarities between this system and cuprates − Ni 1+ in infinite-layer nickelates being isoelectronic to Cu 2+ in high-T c cuprates. Here, we explore the unique role of magnetic rare earth ions in superconducting Eu-doped NdNiO 2 . We show that the field-induced re-entrant superconductivity which we evidence in this compound is the result of a delicate balance between the competing effects of the Eu 2+ and Nd 3+ ions. Our analyses of the extraordinary Hall effect and modeling of the superconducting critical fields demonstrate that the influence of these ions on magneto-transport is only felt when they are polarized by a magnetic field.
Article Details
Authors (14)
Lucia Varbaro
Lukas Korosec
Chih-Ying Hsu
Duncan T. L. Alexander
Pau Torruella
Electron Spectrometry and Microscopy Laboratory, Institut de Physique
Clémentine Thibault
Benjamin A. Piot
David Le Boeuf
Javier Herrero-Martín
ALBA Synchrotron, Carrer de la Llum, 2, 26, 08290 Cerdanyola del Vallès, Barcelona, Spain
Weibin Li
State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems; Key Laboratory of Grassland Livestock Industry Innovation, Ministry of Agriculture and Rural Affairs; Engineering Research Center of Grassland Industry, Ministry of Education; College of Pastoral Agriculture Science and Technology, Lanzhou University
Evgenios Stylianidis
Marta Gibert
Marc Gabay
Jean-Marc Triscone