G
Giulio Ciraolo
Researcher at University of Milan
Publications - 87
Citations - 1370
Giulio Ciraolo is an academic researcher from University of Milan. The author has contributed to research in topics: Overdetermined system & Mean curvature. The author has an hindex of 18, co-authored 83 publications receiving 1116 citations. Previous affiliations of Giulio Ciraolo include University of Palermo & University of Florence.
Papers
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Spectral Theory of a Neumann–Poincaré-Type Operator and Analysis of Cloaking Due to Anomalous Localized Resonance
TL;DR: In this paper, a necessary and sufficient condition on the fixed source term for electromagnetic power dissipation to blow up as the loss parameter of the plasmonic material goes to zero is given.
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Spectral Analysis of the Neumann–Poincaré Operator and Characterization of the Stress Concentration in Anti-Plane Elasticity
TL;DR: In this paper, it was shown that the blowup of the gradient can be characterized by a singular function defined by the single layer potential of an eigenfunction corresponding to the eigenvalue 1/2 of a Neumann-Poincare type operator defined on the boundaries of the inclusions.
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Spectral theory of a Neumann-Poincar\'e-type operator and analysis of anomalous localized resonance II
TL;DR: In this paper, the authors investigate the phenomenon of anomalous localized resonance (CALR) in two and three dimensions when the coated structure is radial, and the core, shell and matrix are isotropic materials.
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Wulff shape characterizations in overdetermined anisotropic elliptic problems
Chiara Bianchini,Giulio Ciraolo +1 more
TL;DR: In this article, the authors studied some overdetermined problems for possibly anisotropic degenerate elliptic PDEs, including the well-known Serrin's overdetermined problem, and proved the corresponding Wulff shape charact...
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Anomalous localized resonance using a folded geometry in three dimensions
TL;DR: In this article, a plasmonic structure of negative dielectric material with non-zero loss parameter is used for cloaking by anomalous localized resonance (CALR).