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M

M. Kraus

Researcher at University of Erlangen-Nuremberg

Publications -  17
Citations -  211

M. Kraus is an academic researcher from University of Erlangen-Nuremberg. The author has contributed to research in topics: Thin film & Irradiation. The author has an hindex of 7, co-authored 17 publications receiving 208 citations. Previous affiliations of M. Kraus include University of Regensburg.

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Angle-resolved critical transport-current density of YBa 2 Cu 3 O 7-δ thin films and YBa 2 Cu 3 O 7-δ /PrBa 2 Cu 3 O 7-δ superlattices containing columnar defects of various orientations

TL;DR: Thin films irradiated with swift heavy ions under different directions showed a strongly changed angular dependence of the critical current density and superlattices revealed an isotropic enhancement in a wide angular range, contrary behavior could be explained by flux lines of different dimensionality.
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Enhancement of critical current densities by heavy-ion irradiation in YBa2Cu3O7- delta observed using the high-resolution Faraday effect.

TL;DR: Domain patterns of flux penetration in heavy-ion-irradiated YBa 2 Cu 3 O 7-δ thin films are obtained using the high-resolution Faraday technique to compare the influence of different projectiles.
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Observation of a disordered vortex state in Bi2Sr2CaCu2O8+x single crystals containing columnar defects.

TL;DR: By irradiating only a part of each sample, a simultaneous decoration of irradiated and nonirradiated parts was possible, which led to the visualization of vortex patterns by means of the high-resolution Bitter-decoration technique.
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Magneto-optical study of flux penetration in heavy-ion irradiated high-Tc single crystals

TL;DR: In this article, the effect of heavy-ion irradiation on the Shubnikov phase was investigated using the high-resolution Faraday effect (HRF) technique, where the authors measured the local pinning forces and critical current densities.
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The influence of columnar defects on the critical current density in (Bi, Pb)2Sr2Ca2Cu3O10 + δAg tapes

TL;DR: In this paper, the effect of columnar defects on the activation energy of polycrystalline (Bi, Pb)2Sr2Ca2Cu3O10 + δ tapes was investigated.