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J C Seamus Davis

Explore the profile of J C Seamus Davis including associated specialties, affiliations and a list of published articles. Areas
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Citations 312
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Recent Articles
1.
Hsu C, Takahashi H, Jerzembeck F, Dasini J, Carroll C, Dusad R, et al.
Proc Natl Acad Sci U S A . 2024 May; 121(21):e2320384121. PMID: 38743620
A recent advance in the study of emergent magnetic monopoles was the discovery that monopole motion is restricted to dynamical fractal trajectories [J. N. Hallén , , 1218 (2022)], thus...
2.
Wang S, Kennedy N, Fujita K, Uchida S, Eisaki H, Johnson P, et al.
Nat Mater . 2024 Mar; 23(4):492-498. PMID: 38438620
The primordial ingredient of cuprate superconductivity is the CuO unit cell. Theories usually concentrate on the intra-atom Coulombic interactions dominating the 3d and 3d configurations of each copper ion. However,...
3.
Gu Q, Carroll J, Wang S, Ran S, Broyles C, Siddiquee H, et al.
Nature . 2023 Jun; 618(7967):921-927. PMID: 37380691
Spin-triplet topological superconductors should exhibit many unprecedented electronic properties, including fractionalized electronic states relevant to quantum information processing. Although UTe may embody such bulk topological superconductivity, its superconductive order parameter...
4.
Chen W, Neerup Breio C, Massee F, Allan M, Petrovic C, Davis J, et al.
Nat Commun . 2023 May; 14(1):2984. PMID: 37225697
Visualizing atomic-orbital degrees of freedom is a frontier challenge in scanned microscopy. Some types of orbital order are virtually imperceptible to normal scattering techniques because they do not reduce the...
5.
Pirie H, Mascot E, Matt C, Liu Y, Chen P, Hamidian M, et al.
Science . 2023 Mar; 379(6638):1214-1218. PMID: 36952423
A Kondo lattice is often electrically insulating at low temperatures. However, several recent experiments have detected signatures of bulk metallicity within this Kondo insulating phase. In this study, we visualized...
6.
OMahony S, Ren W, Chen W, Chong Y, Liu X, Eisaki H, et al.
Proc Natl Acad Sci U S A . 2022 Sep; 119(37):e2207449119. PMID: 36067325
The elementary CuO plane sustaining cuprate high-temperature superconductivity occurs typically at the base of a periodic array of edge-sharing CuO pyramids. Virtual transitions of electrons between adjacent planar Cu and...
7.
Chen W, Ren W, Kennedy N, Hamidian M, Uchida S, Eisaki H, et al.
Proc Natl Acad Sci U S A . 2022 Jul; 119(31):e2206481119. PMID: 35895680
Electron-pair density wave (PDW) states are now an intense focus of research in the field of cuprate correlated superconductivity. PDWs exhibit periodically modulating superconductive electron pairing that can be visualized...
8.
Wang S, Choubey P, Chong Y, Chen W, Ren W, Eisaki H, et al.
Nat Commun . 2021 Oct; 12(1):6087. PMID: 34667154
An unidentified quantum fluid designated the pseudogap (PG) phase is produced by electron-density depletion in the CuO antiferromagnetic insulator. Current theories suggest that the PG phase may be a pair...
9.
Liu X, Chong Y, Sharma R, Davis J
Nat Mater . 2021 Aug; 20(11):1480-1484. PMID: 34462570
The most essential characteristic of any fluid is the velocity field, and this is particularly true for macroscopic quantum fluids. Although rapid advances have occurred in quantum fluid velocity field...
10.
Chong Y, Liu X, Sharma R, Kostin A, Gu G, Fujita K, et al.
Nano Lett . 2020 Sep; 20(11):8001-8007. PMID: 32985892
The quantum anomalous Hall (QAH) effect appears in ferromagnetic topological insulators (FMTIs) when a Dirac mass gap opens in the spectrum of the topological surface states (SSs). Unaccountably, although the...