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Muamer Kadic

Researcher at Centre national de la recherche scientifique

Publications -  156
Citations -  7178

Muamer Kadic is an academic researcher from Centre national de la recherche scientifique. The author has contributed to research in topics: Metamaterial & Cloaking. The author has an hindex of 30, co-authored 124 publications receiving 5184 citations. Previous affiliations of Muamer Kadic include University of Burgundy & Karlsruhe Institute of Technology.

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Three-dimensional mechanical metamaterials with a twist

TL;DR: Microstructured three-dimensional elastic chiral mechanical metamaterials that overcome the unavailability of this degree of freedom hinders applications in terms of mode conversion and the realization of advanced mechanical designs using coordinate transformations are realized.
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Tailored 3D mechanical metamaterials made by dip-in direct-laser-writing optical lithography.

TL;DR: Bow-tie elements assembled into mechanical metamaterials with positive/zero/negative Poisson's ratio and with sufficient overall size for direct mechanical characterization aim at demonstrating the new possibilities with respect to rationally designed effective materials.
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Experiments on transformation thermodynamics: molding the flow of heat.

TL;DR: A microstructured thermal cloak is design, fabricate, and characterize that molds the flow of heat around an object in a metal plate that allows for transient protection of the object from heating while maintaining the same downstream heat flow as without object and cloak.
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An elasto-mechanical unfeelability cloak made of pentamode metamaterials

TL;DR: This work designs an approximate elasto-mechanical core-shell 'unfeelability' cloak based on pentamode metamaterials and quasi-statically deform cloak and control samples in the linear regime and map the displacement fields by autocorrelation-based analysis of recorded movies.
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On the practicability of pentamode mechanical metamaterials

TL;DR: In this article, the pentamode theoretical ideal suggested by Milton and Cherkaev in 1995 can be approximated by a metamaterial with current state-of-the-art lithography.