Two-dimensional Shiba lattices as possible platform for crystalline topological superconductivity

Fuente: arXiv
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Main Authors: Soldini, Martina O., Küster, Felix, Wagner, Glenn, Das, Souvik, Aldarawsheh, Amal, Thomale, Ronny, Lounis, Samir, Parkin, Stuart S. P., Sessi, Paolo, Neupert, Titus
Format: Preprint
Published: 2023
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author Soldini, Martina O.
Küster, Felix
Wagner, Glenn
Das, Souvik
Aldarawsheh, Amal
Thomale, Ronny
Lounis, Samir
Parkin, Stuart S. P.
Sessi, Paolo
Neupert, Titus
author_facet Soldini, Martina O.
Küster, Felix
Wagner, Glenn
Das, Souvik
Aldarawsheh, Amal
Thomale, Ronny
Lounis, Samir
Parkin, Stuart S. P.
Sessi, Paolo
Neupert, Titus
contents Localized or propagating Majorana boundary modes are the key feature of topological superconductors. They are rare in naturally-occurring compounds, but the tailored manipulation of quantum matter offers opportunities for their realization. Specifically, lattices of Yu-Shiba-Rusinov bound states $-$ Shiba lattices $-$ that arise when magnetic adatoms are placed on the surface of a conventional superconductor can be used to create topological bands within the superconducting gap of the substrate. Here, using scanning tunnelling microscopy to create and probe adatom lattices with single atom precision we reveal two signatures consistent with the realization of two types of mirror symmetry protected topological superconductors. The first has edge modes as well as higher-order corner states, and the second has symmetry-protected bulk nodal points. In principle, their topological character and boundary modes should be protected by the spatial symmetries of the adatom lattice. Our results highlight the potential of Shiba lattices as a platform to design the topology and sample geometry of 2D superconductors.
format Preprint
id arxiv_https___arxiv_org_abs_2307_06365
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Two-dimensional Shiba lattices as possible platform for crystalline topological superconductivity
Soldini, Martina O.
Küster, Felix
Wagner, Glenn
Das, Souvik
Aldarawsheh, Amal
Thomale, Ronny
Lounis, Samir
Parkin, Stuart S. P.
Sessi, Paolo
Neupert, Titus
Mesoscale and Nanoscale Physics
Superconductivity
Localized or propagating Majorana boundary modes are the key feature of topological superconductors. They are rare in naturally-occurring compounds, but the tailored manipulation of quantum matter offers opportunities for their realization. Specifically, lattices of Yu-Shiba-Rusinov bound states $-$ Shiba lattices $-$ that arise when magnetic adatoms are placed on the surface of a conventional superconductor can be used to create topological bands within the superconducting gap of the substrate. Here, using scanning tunnelling microscopy to create and probe adatom lattices with single atom precision we reveal two signatures consistent with the realization of two types of mirror symmetry protected topological superconductors. The first has edge modes as well as higher-order corner states, and the second has symmetry-protected bulk nodal points. In principle, their topological character and boundary modes should be protected by the spatial symmetries of the adatom lattice. Our results highlight the potential of Shiba lattices as a platform to design the topology and sample geometry of 2D superconductors.
title Two-dimensional Shiba lattices as possible platform for crystalline topological superconductivity
topic Mesoscale and Nanoscale Physics
Superconductivity
url https://arxiv.org/abs/2307.06365