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  5. Optically Probing Unconventional Superconductivity in Atomically Thin Bi<sub>2</sub>Sr<sub>2</sub>Ca<sub>0.92</sub>Y<sub>0.08</sub>Cu<sub>2</sub>O<sub>8+δ</sub>

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Article
en
2024

Optically Probing Unconventional Superconductivity in Atomically Thin Bi<sub>2</sub>Sr<sub>2</sub>Ca<sub>0.92</sub>Y<sub>0.08</sub>Cu<sub>2</sub>O<sub>8+δ</sub>

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en
2024
Vol 24 (13)
Vol. 24
DOI: 10.1021/acs.nanolett.4c00559

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Kenji Watanabe
Kenji Watanabe

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Yunhuan Xiao
Jingda Wu
Jerry I. Dadap
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Abstract

Atomically thin cuprates exhibiting a superconducting phase transition temperature similar to that of the bulk have recently been realized, although the device fabrication remains a challenge and limits the potential for many novel studies and applications. Here, we use an optical pump-probe approach to noninvasively study the unconventional superconductivity in atomically thin Bi2Sr2Ca0.92Y0.08Cu2O8+δ (Y-Bi2212). Apart from finding an optical response due to the superconducting phase transition that is similar to that of bulk Y-Bi2212, we observe that the sign and amplitude of the pump-probe signal in atomically thin flakes vary significantly in different dielectric environments depending on the nature of the optical excitation. By exploiting the spatial resolution of the optical probe, we uncover the exceptional sensitivity of monolayer Y-Bi2212 to the environment. Our results provide the first optical evidence for the intralayer nature of the superconducting condensate in Bi2212 and highlight the role of double-sided encapsulation in preserving superconductivity in atomically thin cuprates.

How to cite this publication

Yunhuan Xiao, Jingda Wu, Jerry I. Dadap, Kashif M. Awan, Dongyang Yang, Jing Liang, Kenji Watanabe, Takashi Taniguchi, Marta Zonno, Martin Bluschke, Hiroshi Eisaki, M. Greven, A. Damascelli, Ziliang Ye (2024). Optically Probing Unconventional Superconductivity in Atomically Thin Bi<sub>2</sub>Sr<sub>2</sub>Ca<sub>0.92</sub>Y<sub>0.08</sub>Cu<sub>2</sub>O<sub>8+δ</sub>. , 24(13), DOI: https://doi.org/10.1021/acs.nanolett.4c00559.

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Publication Details

Type

Article

Year

2024

Authors

14

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0

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0

Language

en

DOI

https://doi.org/10.1021/acs.nanolett.4c00559

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