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Synthesis and microwave properties of thin films of the 1 : 2 : 2 : 1 borocarbide superconductors YNiBC and ErNiBC (Articolo in rivista)
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- Synthesis and microwave properties of thin films of the 1 : 2 : 2 : 1 borocarbide superconductors YNiBC and ErNiBC (Articolo in rivista) (literal)
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- 1999-01-01T00:00:00+01:00 (literal)
- Http://www.cnr.it/ontology/cnr/pubblicazioni.owl#doi
- 10.1109/77.784954 (literal)
- Alternative label
Andreone, A. and Aruta, C. and Iavarone, M. and Palomba, F. and Russo, M. L. and Salluzzo, M. and Vaglio, R. and Cassinese, A. and Hein, M. A. and Kaiser, T. and Mueller, G. and Perpeet, M. (1999)
Synthesis and microwave properties of thin films of the 1 : 2 : 2 : 1 borocarbide superconductors YNiBC and ErNiBC
in IEEE transactions on applied superconductivity (Print)
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- Andreone, A. and Aruta, C. and Iavarone, M. and Palomba, F. and Russo, M. L. and Salluzzo, M. and Vaglio, R. and Cassinese, A. and Hein, M. A. and Kaiser, T. and Mueller, G. and Perpeet, M. (literal)
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- A. Andreone, C. Aruta, M. Iavarone, F. Palomba, M. L. Russo, M. Salluzzo and R. Vaglio
INFM - Dipartimento di Scienze Fisiche, Universita' di Napoli \"Federico 11\", Italy
A. Cassinese, M. A. Hein, T. Kaiser, G. Mueller, M. Perpeet
Fachbereich Physik, Universitaet Wuppertal, Germany (literal)
- Titolo
- Synthesis and microwave properties of thin films of the 1 : 2 : 2 : 1 borocarbide superconductors YNiBC and ErNiBC (literal)
- Abstract
- ,High-quality c-axis oriented YNi2B2C (transition temperature T-c=15K) and ErNi2B2C (T-c=9.5K) borocarbide superconducting thin films were grown \"in-situ\" on MgO and sapphire substrates by planar magnetron sputtering. Here we report data on the temperature, DC and RF magnetic field dependent surface impedance of the films and discuss them in view of possible applications. The YNi2B2C films displayed the behavior expected for BCS-like superconductors, while the microwave response of the antiferromagnetically ordering compound ErNi2B2C mas distinctly different. The field dependent surface resistance of both types of films displayed granular effects. (literal)
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