John Singleton
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Explore the profile of John Singleton including associated specialties, affiliations and a list of published articles.
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60
Citations
190
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Recent Articles
1.
Zheng G, Zhu Y, Chen K, Kang B, Zhang D, Jenkins K, et al.
Proc Natl Acad Sci U S A
. 2025 Jan;
122(5):e2421390122.
PMID: 39888914
In metals, electrons in a magnetic field undergo cyclotron motion, leading to oscillations in physical properties called quantum oscillations. This phenomenon has never been seen in a robust insulator because...
2.
Singleton J
20 Century Br Hist
. 2024 Oct;
34(4):681-702.
PMID: 39446428
This article examines the Attlee government's performance as a crisis manager in relation to tobacco policy in the years prior to the publication in 1950 of research linking smoking and...
3.
Rai B, Chikara S, Ding X, Oswald I, Schonemann R, Loganathan V, et al.
Phys Rev X
. 2024 Oct;
8(4).
PMID: 39399481
We report complex metamagnetic transitions in single crystals of the new low carrier Kondo antiferromagnet . Electrical transport, magnetization, and specific heat measurements reveal antiferromagnetic order at . Neutron diffraction...
4.
Yuan W, Yan Z, Yi H, Wang Z, Paolini S, Zhao Y, et al.
Nano Lett
. 2024 Jun;
24(26):7962-7971.
PMID: 38885199
The interface of two materials can harbor unexpected emergent phenomena. One example is interface-induced superconductivity. In this work, we employ molecular beam epitaxy to grow a series of heterostructures formed...
5.
Frank C, Lewin S, Saucedo Salas G, Czajka P, Hayes I, Yoon H, et al.
Nat Commun
. 2024 Apr;
15(1):3378.
PMID: 38643147
Reentrant superconductivity is an uncommon phenomenon in which the destructive effects of magnetic field on superconductivity are mitigated, allowing a zero-resistance state to survive under conditions that would otherwise destroy...
6.
Jiang Q, Palmstrom J, Singleton J, Chikara S, Graf D, Wang C, et al.
Nat Commun
. 2024 Mar;
15(1):2310.
PMID: 38485725
In type-II Weyl semimetals (WSMs), the tilting of the Weyl cones leads to the coexistence of electron and hole pockets that touch at the Weyl nodes. These electrons and holes...
7.
Yi H, Zhao Y, Chan Y, Cai J, Mei R, Wu X, et al.
Science
. 2024 Feb;
383(6683):634-639.
PMID: 38330133
The interface between two different materials can show unexpected quantum phenomena. In this study, we used molecular beam epitaxy to synthesize heterostructures formed by stacking together two magnetic materials, a...
8.
Schonemann R, Rosa P, Thomas S, Lai Y, Nguyen D, Singleton J, et al.
PNAS Nexus
. 2024 Jan;
3(1):pgad428.
PMID: 38234583
There has been a recent surge of interest in UTe due to its unconventional magnetic field ()-reinforced spin-triplet superconducting phases persisting at fields far above the simple Pauli limit for...
9.
Yi H, Hu L, Zhao Y, Zhou L, Yan Z, Zhang R, et al.
Nat Commun
. 2023 Nov;
14(1):7119.
PMID: 37932274
Over the last decade, the possibility of realizing topological superconductivity (TSC) has generated much excitement. TSC can be created in electronic systems where the topological and superconducting orders coexist, motivating...
10.
Revealing a 3D Fermi Surface Pocket and Electron-Hole Tunneling in UTe_{2} with Quantum Oscillations
Broyles C, Rehfuss Z, Siddiquee H, Zhu J, Zheng K, Nikolo M, et al.
Phys Rev Lett
. 2023 Aug;
131(3):036501.
PMID: 37540859
Spin triplet superconductor UTe_{2} is widely believed to host a quasi-two-dimensional Fermi surface, revealed by first-principles calculations, photoemission, and quantum oscillation measurements. An outstanding question still remains as to the...