Epitaxial growth of gold films on the elemental superconductors V(100), Nb(100) and Nb(110)

Fuente: arXiv
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Main Authors: Wang, Dongfei, Vaxevani, Katerina, Longo, Danilo, Kerschbaumer, Samuel, Ortuzar, Jon, Trivini, Stefano, Li, Jingcheng, Ilyn, Maxim, Rogero, Celia, Pascual, Jose Ignacio
Format: Preprint
Published: 2025
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author Wang, Dongfei
Vaxevani, Katerina
Longo, Danilo
Kerschbaumer, Samuel
Ortuzar, Jon
Trivini, Stefano
Li, Jingcheng
Ilyn, Maxim
Rogero, Celia
Pascual, Jose Ignacio
author_facet Wang, Dongfei
Vaxevani, Katerina
Longo, Danilo
Kerschbaumer, Samuel
Ortuzar, Jon
Trivini, Stefano
Li, Jingcheng
Ilyn, Maxim
Rogero, Celia
Pascual, Jose Ignacio
contents Quantum technologies require a new generation of superconducting electronic devices and circuitry. However, the superconducting materials used to construct them are restricted to a class of bulk superconductors. Gold films grown in contact with superconducting materials can exhibit superconducting correlations through the proximity effect, with various possible implementations in quantum technology. Here, we study the growth of flat Au films on various surfaces of the elemental superconductors vanadium and niobium through a combination of low-temperature scanning tunneling microscopy (STM) and X-ray photoelectron spectroscopy (XPS). In particular, we investigate the growth morphology and composition as a function of temperature and coverage. We find that gold films can grow flat and oxygen-free when annealed to sufficiently high temperatures; however, they are also susceptible to partial intermixing with the substrate elements. Low-temperature scanning tunneling spectroscopy (STS) measurements elucidate the emergence of a proximitized superconducting gap at the gold surface. Additionally, we demonstrate the survival of the magnetic state of FeTPP-Cl molecules on the surface of these gold films, proving that they behave as a good support for probing molecular magnetism. We found that the exchange interaction between the molecular spin and the superconducting condensate can be inferred by the measurement of sub-gap Yu-Shiva-Rusinov states. Our work shows that proximitised Au films constitute a promising platform to explore on-superconducting-surface synthesis and the interaction between superconductivity and magnetism in a large spin-orbit coupling environment.
format Preprint
id arxiv_https___arxiv_org_abs_2505_08914
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Epitaxial growth of gold films on the elemental superconductors V(100), Nb(100) and Nb(110)
Wang, Dongfei
Vaxevani, Katerina
Longo, Danilo
Kerschbaumer, Samuel
Ortuzar, Jon
Trivini, Stefano
Li, Jingcheng
Ilyn, Maxim
Rogero, Celia
Pascual, Jose Ignacio
Superconductivity
Mesoscale and Nanoscale Physics
Quantum technologies require a new generation of superconducting electronic devices and circuitry. However, the superconducting materials used to construct them are restricted to a class of bulk superconductors. Gold films grown in contact with superconducting materials can exhibit superconducting correlations through the proximity effect, with various possible implementations in quantum technology. Here, we study the growth of flat Au films on various surfaces of the elemental superconductors vanadium and niobium through a combination of low-temperature scanning tunneling microscopy (STM) and X-ray photoelectron spectroscopy (XPS). In particular, we investigate the growth morphology and composition as a function of temperature and coverage. We find that gold films can grow flat and oxygen-free when annealed to sufficiently high temperatures; however, they are also susceptible to partial intermixing with the substrate elements. Low-temperature scanning tunneling spectroscopy (STS) measurements elucidate the emergence of a proximitized superconducting gap at the gold surface. Additionally, we demonstrate the survival of the magnetic state of FeTPP-Cl molecules on the surface of these gold films, proving that they behave as a good support for probing molecular magnetism. We found that the exchange interaction between the molecular spin and the superconducting condensate can be inferred by the measurement of sub-gap Yu-Shiva-Rusinov states. Our work shows that proximitised Au films constitute a promising platform to explore on-superconducting-surface synthesis and the interaction between superconductivity and magnetism in a large spin-orbit coupling environment.
title Epitaxial growth of gold films on the elemental superconductors V(100), Nb(100) and Nb(110)
topic Superconductivity
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2505.08914