Enhanced Superconductivity and Mixed-dimensional Behaviour in Infinite-layer Samarium Nickelate Thin Films

Fuente: arXiv
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Autori principali: Yang, Mingwei, Wang, Heng, Tang, Jiayin, Luo, Junping, Wu, Xianfeng, Xu, Wenjing, Wang, Aile, Wu, Yuetong, Mao, Ruilin, Wang, Ze, Pei, Zhicheng, Zhou, Guangdi, Dong, Zhengang, Feng, Bohan, Shi, Lingchi, Meng, Wenjie, Xi, Chuanying, Pi, Li, Lu, Qingyou, Okamoto, Jun, Huang, Hsiao-Yu, Huang, Di-Jing, Huang, Haoliang, Wang, Qisi, Gao, Peng, Chen, Zhuoyu, Li, Danfeng
Natura: Preprint
Pubblicazione: 2025
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author Yang, Mingwei
Wang, Heng
Tang, Jiayin
Luo, Junping
Wu, Xianfeng
Xu, Wenjing
Wang, Aile
Wu, Yuetong
Mao, Ruilin
Wang, Ze
Pei, Zhicheng
Zhou, Guangdi
Dong, Zhengang
Feng, Bohan
Shi, Lingchi
Meng, Wenjie
Xi, Chuanying
Pi, Li
Lu, Qingyou
Okamoto, Jun
Huang, Hsiao-Yu
Huang, Di-Jing
Huang, Haoliang
Wang, Qisi
Gao, Peng
Chen, Zhuoyu
Li, Danfeng
author_facet Yang, Mingwei
Wang, Heng
Tang, Jiayin
Luo, Junping
Wu, Xianfeng
Xu, Wenjing
Wang, Aile
Wu, Yuetong
Mao, Ruilin
Wang, Ze
Pei, Zhicheng
Zhou, Guangdi
Dong, Zhengang
Feng, Bohan
Shi, Lingchi
Meng, Wenjie
Xi, Chuanying
Pi, Li
Lu, Qingyou
Okamoto, Jun
Huang, Hsiao-Yu
Huang, Di-Jing
Huang, Haoliang
Wang, Qisi
Gao, Peng
Chen, Zhuoyu
Li, Danfeng
contents Rare-earth infinite-layer nickelates represent an emerging class of unconventional superconductors, with materials synthesis largely limited to early lanthanide compounds. Here, we report the synthesis and characterization of phase-pure superconducting samarium-based infinite-layer nickelate thin films, including the first demonstration of Sm$_{1-x}$Sr$_x$NiO$_2$, along with co-doped variants incorporating europium and calcium. These films, grown on LSAT (001) substrates, exhibit coherent lattice structures up to $\sim$ 9 nm thickness with minimal stacking faults. The co-doped compounds achieve a record-small $c$-axis parameter of 3.26 Å and display remarkable superconducting transition temperatures up to 32.5 K. These results establish a clear correlation between decreasing $c$-axis parameter and increasing critical temperature across different rare-earth systems. In addition, angle-dependent magnetoresistance investigations reveal the existence of a hybrid mixture of 2D and 3D superconductivity in this novel system with enhanced coupling between the rare-earth 5d and Ni 3d orbitals, confirmed by resonant inelastic X-ray scattering experiments. As the concentration of Eu increases, the system exhibits a clear tendency towards 3D superconductivity. Furthermore, we observe distinctive negative magnetoresistance in the europium-containing samples. These findings advocate clear materials design principles for higher transition temperatures and exotic physics in infinite-layer nickelate superconductors through structural engineering of the rare-earth site.
format Preprint
id arxiv_https___arxiv_org_abs_2503_18346
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Enhanced Superconductivity and Mixed-dimensional Behaviour in Infinite-layer Samarium Nickelate Thin Films
Yang, Mingwei
Wang, Heng
Tang, Jiayin
Luo, Junping
Wu, Xianfeng
Xu, Wenjing
Wang, Aile
Wu, Yuetong
Mao, Ruilin
Wang, Ze
Pei, Zhicheng
Zhou, Guangdi
Dong, Zhengang
Feng, Bohan
Shi, Lingchi
Meng, Wenjie
Xi, Chuanying
Pi, Li
Lu, Qingyou
Okamoto, Jun
Huang, Hsiao-Yu
Huang, Di-Jing
Huang, Haoliang
Wang, Qisi
Gao, Peng
Chen, Zhuoyu
Li, Danfeng
Superconductivity
Materials Science
Rare-earth infinite-layer nickelates represent an emerging class of unconventional superconductors, with materials synthesis largely limited to early lanthanide compounds. Here, we report the synthesis and characterization of phase-pure superconducting samarium-based infinite-layer nickelate thin films, including the first demonstration of Sm$_{1-x}$Sr$_x$NiO$_2$, along with co-doped variants incorporating europium and calcium. These films, grown on LSAT (001) substrates, exhibit coherent lattice structures up to $\sim$ 9 nm thickness with minimal stacking faults. The co-doped compounds achieve a record-small $c$-axis parameter of 3.26 Å and display remarkable superconducting transition temperatures up to 32.5 K. These results establish a clear correlation between decreasing $c$-axis parameter and increasing critical temperature across different rare-earth systems. In addition, angle-dependent magnetoresistance investigations reveal the existence of a hybrid mixture of 2D and 3D superconductivity in this novel system with enhanced coupling between the rare-earth 5d and Ni 3d orbitals, confirmed by resonant inelastic X-ray scattering experiments. As the concentration of Eu increases, the system exhibits a clear tendency towards 3D superconductivity. Furthermore, we observe distinctive negative magnetoresistance in the europium-containing samples. These findings advocate clear materials design principles for higher transition temperatures and exotic physics in infinite-layer nickelate superconductors through structural engineering of the rare-earth site.
title Enhanced Superconductivity and Mixed-dimensional Behaviour in Infinite-layer Samarium Nickelate Thin Films
topic Superconductivity
Materials Science
url https://arxiv.org/abs/2503.18346