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题名

Intrinsic Spin Susceptibility and Pseudogaplike Behavior in Infinite-Layer LaNiO2

作者
通讯作者Mei,J. W.; Wu,T.
发表日期
2021-05-10
DOI
发表期刊
ISSN
0031-9007
EISSN
1079-7114
卷号126期号:19
摘要

The recent discovery of superconductivity in doped infinite-layer nickelates has stimulated intensive interest, especially for similarities and differences compared to that in cuprate superconductors. In contrast to cuprates, although earlier magnetization measurement reveals a Curie-Weiss-like behavior in undoped infinite-layer nickelates, there is no magnetic ordering observed by elastic neutron scattering down to liquid helium temperature. Until now, the nature of the magnetic ground state in undoped infinite-layer nickelates was still elusive. Here, we perform a nuclear magnetic resonance (NMR) experiment through La139 nuclei to study the intrinsic spin susceptibility of infinite-layer LaNiO2. First, the signature for magnetic ordering or freezing is absent in the La139 NMR spectrum down to 0.24 K, which unambiguously confirms a paramagnetic ground state in LaNiO2. Second, a pseudogaplike behavior instead of Curie-Weiss-like behavior is observed in both the temperature-dependent Knight shift and nuclear spin-lattice relaxation rate (1/T1), which is widely observed in both underdoped cuprates and iron-based superconductors. Furthermore, the scaling behavior between the Knight shift and 1/T1T has also been discussed. Finally, the present results imply a considerable exchange interaction in infinite-layer nickelates, which sets a strong constraint for the proposed theoretical models.

相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
重要成果
NI论文
学校署名
通讯
WOS记录号
WOS:000652838300012
EI入藏号
20212110410024
EI主题词
Copper compounds ; Ground state ; Iron-based Superconductors ; Liquefied gases ; Magnetic susceptibility ; Magnetism ; Neutron scattering ; Nuclear magnetic resonance spectroscopy ; Superfluid helium
EI分类号
Magnetism: Basic Concepts and Phenomena:701.2 ; Chemical Products Generally:804
ESI学科分类
PHYSICS
Scopus记录号
2-s2.0-85106393454
来源库
Scopus
引用统计
被引频次[WOS]:29
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/229572
专题理学院_物理系
量子科学与工程研究院
作者单位
1.Hefei National Laboratory for Physical Sciences at the Microscale,University of Science and Technology of China,Hefei, Anhui,230026,China
2.CAS Key Laboratory of Strongly-coupled Quantum Matter Physics,Department of Physics,University of Science and Technology of China,Hefei, Anhui,230026,China
3.Shenzhen Institute for Quantum Science and Engineering,Department of Physics,Southern University of Science and Technology,Shenzhen,518055,China
4.Shenzhen Key Laboratory of Advanced Quantum Functional Materials and Devices,Southern University of Science and Technology,Shenzhen,518055,China
5.CAS Center for Excellence in Superconducting Electronics (CENSE),Shanghai,200050,China
6.CAS Center for Excellence in Quantum Information and Quantum Physics,Hefei, Anhui,230026,China
7.Collaborative Innovation Center of Advanced Microstructures,Nanjing University,Nanjing,210093,China
通讯作者单位物理系;  量子科学与工程研究院;  南方科技大学
推荐引用方式
GB/T 7714
Zhao,D.,Zhou,Y. B.,Fu,Y.,et al. Intrinsic Spin Susceptibility and Pseudogaplike Behavior in Infinite-Layer LaNiO2[J]. PHYSICAL REVIEW LETTERS,2021,126(19).
APA
Zhao,D..,Zhou,Y. B..,Fu,Y..,Wang,L..,Zhou,X. F..,...&Chen,X. H..(2021).Intrinsic Spin Susceptibility and Pseudogaplike Behavior in Infinite-Layer LaNiO2.PHYSICAL REVIEW LETTERS,126(19).
MLA
Zhao,D.,et al."Intrinsic Spin Susceptibility and Pseudogaplike Behavior in Infinite-Layer LaNiO2".PHYSICAL REVIEW LETTERS 126.19(2021).
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