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Fully Suppressed Superconductivity in Nonferromagnetic Heavy Fermion/Superconductor Bilayers: Rocksalt-Type CeO/LaO

delete2026-07-09
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OA
AI
M
Mikito Sekine
M
Masamichi Negishi
S
Satoshi Sasaki
H
Hidetatsu Yoshimura
N
Noriaki Kimura
T
Tomoteru Fukumura *
DOI:10.1021/acsnano.6c00792delete
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Abstract

Abstract

En 中文
Superconductor/ferromagnet heterostructures have been investigated extensively because of their capability to break superconducting electron pairs. In this study, we report on heterostructures of a superconductor and heavy-fermion system as an alternative platform for a strong pair-breaking proximity effect. We fabricated rocksalt-type CeO/LaO heteroepitaxial bilayers, where LaO is a superconductor and CeO is a nonferromagnetic heavy-fermion system. While LaO(9.5–21 nm) thin films showed superconductivity below 4.4–5.2 K, the CeO(4.8–5.8 nm)/LaO(9.2–17 nm) bilayers showed no trace of superconductivity down to 0.025 K. This result demonstrates a strong pair-breaking effect at the superconductor/heavy-fermion system heteroepitaxial interface. This effect would provide a useful platform for superconducting micro and nano devices.
Keywords:
Epitaxy
Layers
Magnetic properties
Thin films
Vesicles
superconductivity
heavy-fermion system
pair-breaking proximity effect
interface
heteroepitaxial bilayer
rare-earth monoxide
rocksalt-type structure

Journal

ACS Nano cover
ACS Nano
IF:
16
Papers:
2.6W
Citations:
25.6W

Organization

T
Tohoku University
Scholars:
3.7K
Papers: 1.4K
Citations: 3.6W
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