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  4. Atomically-resolved interlayer charge ordering and its interplay with superconductivity in YBa2Cu3O6.81
 
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Atomically-resolved interlayer charge ordering and its interplay with superconductivity in YBa2Cu3O6.81

Journal
Nature Communications
Journal Volume
12
Journal Issue
1
Date Issued
2021
Author(s)
Hsu C.-C
Huang B.-C
Schnedler M
Lai M.-Y
Wang Y.-L
Dunin-Borkowski R.E
Chang C.-S
Lee T.-K
Ebert P
YA-PING CHIU  
DOI
10.1038/s41467-021-24003-0
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85108338099&doi=10.1038%2fs41467-021-24003-0&partnerID=40&md5=ad26353b20bb6db75805316bca5d4c40
https://scholars.lib.ntu.edu.tw/handle/123456789/606826
Abstract
High-temperature superconductive (SC) cuprates exhibit not only a SC phase, but also competing orders, suppressing superconductivity. Charge order (CO) has been recognized as an important competing order, but its microscopic spatial interplay with SC phase as well as the interlayer coupling in CO and SC phases remain elusive, despite being essential for understanding the physical mechanisms of competing orders and hence superconductivity. Here we report the achievement of direct real-space imaging with atomic-scale resolution of cryogenically cleaved YBa2Cu3O6.81 using cross-sectional scanning tunneling microscopy/spectroscopy. CO nanodomains are found embedded in the SC phase with a proximity-like boundary region characterized by mutual suppression of CO and superconductivity. Furthermore, SC coherence as well as CO occur on both CuO chain and plane layers, revealing carrier transport and density of states mixing between layers. The CO antiphase correlation along the c direction suggests a dominance of Coulomb repulsion over Josephson tunneling between adjacent layers. ? 2021, The Author(s).
Subjects
copper; correlation; dominance; spatial analysis; superconductivity; tunneling; achievement; article; scanning tunneling microscopy; spectroscopy; superconductivity
Type
journal article

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