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Tailored Ising superconductivity in intercalated bulk NbSe2
by
Tan, Pingheng
, Chen, Xi
, Xu, Yong
, Xu, Shengnan
, Bao, Changhua
, Yao, Wei
, Duan, Wenhui
, Lin, Zuzhang
, Zhang, Kenan
, Feng, Runfa
, Zhang, Haoxiong
, Guo, Chenguang
, Yu, Pu
, Wu, Yang
, Ji, Shuaihua
, Zhou, Shuyun
, Zhang, Hongyun
, Xue, Qi-Kun
, Luo, Laipeng
, Shen, Shengchun
, Cong, Xin
, Rousuli, Awabaikeli
, Zhao, Kun
in
639/301/119
/ 639/766/119
/ Atomic
/ Carrier density
/ Cations
/ Classical and Continuum Physics
/ Complex Systems
/ Condensed Matter Physics
/ Critical field (superconductivity)
/ Crystals
/ Electron spin
/ Electronic structure
/ Electrons
/ Flakes
/ Intercalation
/ Ionic liquids
/ Ions
/ Ising model
/ Layered materials
/ Letter
/ Mathematical and Computational Physics
/ Molecular
/ Monolayers
/ Optical and Plasma Physics
/ Photoelectric emission
/ Physics
/ Physics and Astronomy
/ Superconductivity
/ Theoretical
/ Transition temperature
2022
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Tailored Ising superconductivity in intercalated bulk NbSe2
by
Tan, Pingheng
, Chen, Xi
, Xu, Yong
, Xu, Shengnan
, Bao, Changhua
, Yao, Wei
, Duan, Wenhui
, Lin, Zuzhang
, Zhang, Kenan
, Feng, Runfa
, Zhang, Haoxiong
, Guo, Chenguang
, Yu, Pu
, Wu, Yang
, Ji, Shuaihua
, Zhou, Shuyun
, Zhang, Hongyun
, Xue, Qi-Kun
, Luo, Laipeng
, Shen, Shengchun
, Cong, Xin
, Rousuli, Awabaikeli
, Zhao, Kun
in
639/301/119
/ 639/766/119
/ Atomic
/ Carrier density
/ Cations
/ Classical and Continuum Physics
/ Complex Systems
/ Condensed Matter Physics
/ Critical field (superconductivity)
/ Crystals
/ Electron spin
/ Electronic structure
/ Electrons
/ Flakes
/ Intercalation
/ Ionic liquids
/ Ions
/ Ising model
/ Layered materials
/ Letter
/ Mathematical and Computational Physics
/ Molecular
/ Monolayers
/ Optical and Plasma Physics
/ Photoelectric emission
/ Physics
/ Physics and Astronomy
/ Superconductivity
/ Theoretical
/ Transition temperature
2022
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Tailored Ising superconductivity in intercalated bulk NbSe2
by
Tan, Pingheng
, Chen, Xi
, Xu, Yong
, Xu, Shengnan
, Bao, Changhua
, Yao, Wei
, Duan, Wenhui
, Lin, Zuzhang
, Zhang, Kenan
, Feng, Runfa
, Zhang, Haoxiong
, Guo, Chenguang
, Yu, Pu
, Wu, Yang
, Ji, Shuaihua
, Zhou, Shuyun
, Zhang, Hongyun
, Xue, Qi-Kun
, Luo, Laipeng
, Shen, Shengchun
, Cong, Xin
, Rousuli, Awabaikeli
, Zhao, Kun
in
639/301/119
/ 639/766/119
/ Atomic
/ Carrier density
/ Cations
/ Classical and Continuum Physics
/ Complex Systems
/ Condensed Matter Physics
/ Critical field (superconductivity)
/ Crystals
/ Electron spin
/ Electronic structure
/ Electrons
/ Flakes
/ Intercalation
/ Ionic liquids
/ Ions
/ Ising model
/ Layered materials
/ Letter
/ Mathematical and Computational Physics
/ Molecular
/ Monolayers
/ Optical and Plasma Physics
/ Photoelectric emission
/ Physics
/ Physics and Astronomy
/ Superconductivity
/ Theoretical
/ Transition temperature
2022
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Tailored Ising superconductivity in intercalated bulk NbSe2
Journal Article
Tailored Ising superconductivity in intercalated bulk NbSe2
2022
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Overview
Reducing the dimensionality of layered materials can result in properties distinct from their bulk crystals
1
–
3
. However, the emergent properties in atomically thin samples, in particular in metallic monolayer flakes, are often obtained at the expense of other important properties. For example, while Ising superconductivity—where the pairing of electrons with opposite out-of-plane spins from K and K′ valleys leads to an in-plane upper critical field exceeding the Pauli limit—does not occur in bulk NbSe
2
, it was observed in two-dimensional monolayer flakes
4
. However, the critical temperature was reduced as compared to bulk crystals
4
–
13
. Here we take a different route to control the superconducting properties of NbSe
2
by intercalating bulk crystals with cations from ionic liquids. This produces Ising superconductivity with a similar critical temperature to the non-intercalated bulk and is more stable than in a monolayer flake. Our angle-resolved photoemission spectroscopy measurements reveal the effectively two-dimensional electronic structure, and a comparison of the experimental electronic structures between intercalated bulk NbSe
2
and monolayer NbSe
2
film reveals that the intercalant induces electron doping. This suggests ionic liquid cation intercalation is an effective technique for controlling both the dimensionality and the carrier concentration, allowing tailored properties exceeding both bulk crystals and monolayer samples.
The superconducting critical temperature of monolayer materials is often lower than their bulk counterparts. Now, intercalation is shown to induce two-dimensional superconducting properties while maintaining the bulk critical temperature.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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