By A. S. Sidorenko, V. I. Zdravkov, J. Kehrle, R. Morari, E. Antropov, G. Obermeier (auth.), Horst Hahn, Anatoli Sidorenko, Ion Tiginyanu (eds.)
The major purpose of the editors of the publication is the demonstration of the intrinsic correlation and mutual impression of 3 very important parts of nanoscience: new phenomena – nanomaterials – nanodevices. this is often the organizing notion of the publication. to find new phenomena it is vital to enhance novel nanotechnological techniques for fabrication of nanomaterials. Nanostructures and new phenomena function the bottom for the improvement of novel nanoelectronic units and platforms. The articles chosen for the e-book illustrate this interrelation.
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Extra info for Nanoscale Phenomena: Fundamentals and Applications
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T / in ErNi2 B2 C is close to the BCS-like behavior, and only the abrupt vanishing of the larger OP at Tc is rather unexpected. It turned out  that the contribution of the larger OP to dV =dI is also temperature dependent decreasing with increasing temperature and containing only about 10% close to Tc . Therefore, it seems that the larger OP disappears at Tc due to a “shrinking” of the corresponding SC part of the Fermi surface. It should be noted that the AF structure in Er and Tm nickel borocarbides is an incommensurate spin density wave.
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Nanoscale Phenomena: Fundamentals and Applications by A. S. Sidorenko, V. I. Zdravkov, J. Kehrle, R. Morari, E. Antropov, G. Obermeier (auth.), Horst Hahn, Anatoli Sidorenko, Ion Tiginyanu (eds.)