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Jochen M. Schneider

Researcher at RWTH Aachen University

Publications -  578
Citations -  15767

Jochen M. Schneider is an academic researcher from RWTH Aachen University. The author has contributed to research in topics: Thin film & Sputter deposition. The author has an hindex of 56, co-authored 505 publications receiving 12514 citations. Previous affiliations of Jochen M. Schneider include University of Hull & University of Erlangen-Nuremberg.

Papers
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Shear-induced mixing governs codeformation of crystalline-amorphous nanolaminates (Erratum: Physical Review Letters (2014) 113 (035501))

TL;DR: In indentation experiments on 10 nm nanocrystalline Cu-100 nm amorphous CuZr model multilayers are presented to study these mechanisms down to the atomic scale and it is found that crystallographic slip bands in the Cu layers coincide with noncrystallographic shear banding in the amorphously CuZR layers.
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Ab initio molecular dynamics model for density, elastic properties and short range order of Co-Fe-Ta-B metallic glass thin films

TL;DR: The model established here is useful to describe the density, elasticity and short range order of Co-Fe-Ta-B metallic glass thin films and strong bonds within the structural units and between the metallic species may give rise to the comparatively large stiffness.
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VUV-Sensitive Silicon Photomultipliers for Xenon Scintillation Light Detection in nEXO

A. Jamil, +152 more
TL;DR: In this paper, the authors present the projected nEXO detector light collection and energy resolution that could be achieved by using these SiPMs in two complementary setups including measurements of the photon-detection efficiency (PDE) with gaseous xenon scintillation light in a vacuum setup and dark measurements in a dry nitrogen gas setup.
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The effect of Si alloying on the thermal stability of Al2O3 films deposited by filtered cathodic arc

TL;DR: In this article, the effect of Si alloying on the phase transformation sequence and phase formation temperatures of Al2O3 thin films deposited by filtered cathodic arc was investigated by annealing experiments in air.
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Ab initio study of M2AlN (M = Ti,V,Cr)

TL;DR: In this article, the authors investigated the effect of valence electron population on bonding and elastic properties of M2AlC phases, where M = Ti, V, and Cr, by means of ab initio total energy calculations.