M
Meigan Aronson
Researcher at Stony Brook University
Publications - 144
Citations - 3515
Meigan Aronson is an academic researcher from Stony Brook University. The author has contributed to research in topics: Magnetization & Magnetic susceptibility. The author has an hindex of 32, co-authored 144 publications receiving 3207 citations. Previous affiliations of Meigan Aronson include State University of New York System & Brookhaven College.
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Journal ArticleDOI
Non-Fermi-liquid scaling of the magnetic response in UCu5-xPdx(x=1,1.5).
TL;DR: It is argued that {ital S}({omega}) represents critical scattering associated with a {ital T}=0 phase transition, whose origin lies with the magnetic screening of individual uranium ions.
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SmB6: Kondo insulator or exotic metal?
TL;DR: In this paper, the activation gap vanishes discontinuously between 45 and 53 kbar, yielding at high pressures a massenhanced Fermi liquid phase, dominated by extended states in the gap with unusual superunitarity scattering properties, and a carrier density which grows almost exponentially with reduced activation gap.
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Chemical pressure and charge-density waves in rare-earth tritellurides
TL;DR: In this article, the authors reported the results of transmission electron microscopy on the layered rare-earth tritellurides R${\mathrm{Te}}_{3}$ (R=La,Sm,Gd,Tb,Dy,Ho,Er,Tm).
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Non fermi liquid ground states in strongly correlated f-electron materials
M. B. Maple,M. C. de Andrade,J. Herrmann,Y. Dalichaouch,D. A. Gajewski,C. L. Seaman,R. Chau,R. Movshovich,Meigan Aronson,Raymond Osborn +9 more
TL;DR: In this paper, the emerging systematics of non-Fermi liquid behavior in f-electron systems, based on the present sample of nearly ten FermI liquid (NFL) systems, are updated.
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Structure and magnetic order of EuB 6
S. Süllow,I. Prasad,Meigan Aronson,J. L. Sarrao,Z. Fisk,D.K. Hristova,A. H. Lacerda,M. F. Hundley,A. Vigliante,Doon Gibbs +9 more
TL;DR: In this paper, the structural and magnetic properties of single-crystalline EuB{sub 6] were investigated and it was shown that the two magnetic phases are connected by spin reorientation enabled by a reduction of the crystalline symmetry from cubic.