M
M. B. Maple
Researcher at University of California, San Diego
Publications - 960
Citations - 27507
M. B. Maple is an academic researcher from University of California, San Diego. The author has contributed to research in topics: Superconductivity & Magnetic susceptibility. The author has an hindex of 78, co-authored 953 publications receiving 26338 citations. Previous affiliations of M. B. Maple include Chiba University & Ohio State University.
Papers
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Journal ArticleDOI
Quantum Critical Scaling and the Origin of Non-Fermi-Liquid Behavior in Sc1 xUxPd3
Stephen D. Wilson,Pengcheng Dai,Pengcheng Dai,D. T. Adroja,Seunghun Lee,Jae Ho Chung,Jae Ho Chung,J. W. Lynn,Nicholas P. Butch,M. B. Maple +9 more
TL;DR: It is argued that the observed non-Fermi-liquid behavior in these f-electron materials arises from the critical phenomena near a T=0 K phase transition, irrespective of the nature of the transition.
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Model discrimination in oscillatory CO oxidation on platinum catalysts at atmospheric pressure
TL;DR: In this article, the reaction-rate oscillations in CO oxidation on platinum catalysts at atmospheric pressure were investigated and two proposed models, the oxidation-reduction and carbon models, explained the oscillations based on different site-blocking chemical species, and both describe the observed phenomena relatively well.
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Normal and superconducting state magnetic properties of RBa2Cu3O7−δ compounds
H. Zhou,C. L. Seaman,Y. Dalichaouch,Bo Wha Lee,K. N. Yang,R.R. Hake,M. B. Maple,Robert P. Guertin,M.V. Kuric +8 more
TL;DR: In this paper, the normal-state magnetic susceptibilities of polycrystalline samples of RBa 2 Cu 2 O 7−δ with R = Y and all the rare earth elements except Pm were investigated.
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Evidence of Modified Ferromagnetism at a Buried Permalloy/CoO Interface at Room Temperature
Sujoy Roy,Cecilia Sanchez-Hanke,Sungkyun Park,Michael R. Fitzsimmons,Y. J. Tang,Jung-Il Hong,David J. Smith,B. J. Taylor,Xuerong Liu,M. B. Maple,Ami E. Berkowitz,C.-C. Kao,Sunil K. Sinha,Sunil K. Sinha +13 more
TL;DR: In this paper, the authors used magnetometry and resonant soft x-ray magnetic reflectometry to determine the depth-dependent charge and magnetization density on an absolute scale across a Permalloy/CoO interface above the N'eel temperature of CoO.
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A comparative compositional study of Ln2-xMxCuO4-y electron-doped superconductors
TL;DR: In this paper, the results of temperature-dependent magnetization and electrical resistivity measurements for a systematic series of compositions and concentrations of the electron-doped copper-oxide superconducting compounds Ln 2− x M x CuO 4− y (Ln = Pr, Nd, Sm, Eu; M = Ce, Th).