Dimensionality of vortex matter in superconducting infinite-layer nickelates

Fuente: arXiv
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Hauptverfasser: Sanchez-Manzano, D., Humbert, V., Zhang, D., Gutiérrez-Llorente, A., Bibes, M., Iglesias, J. Santamaria L., Villegas, Javier E.
Format: Preprint
Veröffentlicht: 2024
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author Sanchez-Manzano, D.
Humbert, V.
Zhang, D.
Gutiérrez-Llorente, A.
Bibes, M.
Iglesias, J. Santamaria L.
Villegas, Javier E.
author_facet Sanchez-Manzano, D.
Humbert, V.
Zhang, D.
Gutiérrez-Llorente, A.
Bibes, M.
Iglesias, J. Santamaria L.
Villegas, Javier E.
contents Characterizing the dimensionality of the superconducting state in infinite-layer (IL) nickelates is essential for understanding its nature. Most studies have addressed this by examining the anisotropy of the upper critical fields. However, the dominance of Pauli paramagnetic effects over orbital effects complicates the interpretation of these experiments in terms of dimensionality. Here, we approach the question from a different perspective by mapping the vortex phase diagram. We show that superconducting Pr0.8Sr0.2NiO2 thin films with low disorder exhibit a vortex liquid-to-glass transition of a quasi-two-dimensional (2D) nature. In contrast, increasing disorder drives a crossover into a pure 2D state. This demonstrates that pure bidimensionality is an extrinsic property, resulting from the decoupling of NiO2 planes due to enhanced disorder. Our findings establish disorder as a key control parameter of superconductivity in IL nickelates and suggest that it resides within the NiO2 planes, providing two fundamental insights for understanding these materials.
format Preprint
id arxiv_https___arxiv_org_abs_2410_14341
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dimensionality of vortex matter in superconducting infinite-layer nickelates
Sanchez-Manzano, D.
Humbert, V.
Zhang, D.
Gutiérrez-Llorente, A.
Bibes, M.
Iglesias, J. Santamaria L.
Villegas, Javier E.
Superconductivity
Characterizing the dimensionality of the superconducting state in infinite-layer (IL) nickelates is essential for understanding its nature. Most studies have addressed this by examining the anisotropy of the upper critical fields. However, the dominance of Pauli paramagnetic effects over orbital effects complicates the interpretation of these experiments in terms of dimensionality. Here, we approach the question from a different perspective by mapping the vortex phase diagram. We show that superconducting Pr0.8Sr0.2NiO2 thin films with low disorder exhibit a vortex liquid-to-glass transition of a quasi-two-dimensional (2D) nature. In contrast, increasing disorder drives a crossover into a pure 2D state. This demonstrates that pure bidimensionality is an extrinsic property, resulting from the decoupling of NiO2 planes due to enhanced disorder. Our findings establish disorder as a key control parameter of superconductivity in IL nickelates and suggest that it resides within the NiO2 planes, providing two fundamental insights for understanding these materials.
title Dimensionality of vortex matter in superconducting infinite-layer nickelates
topic Superconductivity
url https://arxiv.org/abs/2410.14341