Project information
Laboratory of thin films and nanostructures
- Project Identification
- VS96102
- Project Period
- 7/1996 - 12/2000
- Investor / Pogramme / Project type
-
Ministry of Education, Youth and Sports of the CR
- Support to University Research Programmes
- MU Faculty or unit
- Faculty of Science
- Keywords
- Thin films, multilayers, nanostructures, quantum wells, quantum wires
Founding of a research laboratory for studies of thin-film systems and nanostructures attached to the Department of Solid State Physics at Faculty of Science, MU Brno. Selection of up-to-date topics backed by the experience of the Department, focusing onthe experimental methods competitive on the international scale, exploiting of the existing collaboration with domestic and foreign institutions. Some of the proposed research is founded by running grants. The immediate start of the activities of theLaboratory assumes several specific tasks of optical and X-ray studies of the SiGeC layers, quantum wells and superlattices of the GaAlInAsP systém, metallic multilayers, superconducting and polymer films. The scientific team of the Laboratory willcosnsist of four newly appinted, young physicsists, and four members of the Department.
Publications
Total number of publications: 25
1998
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Strain relaxation and surface morphology of compositionally graded Si/SiGe buffers
J. Vac. Sci & Technol., year: 1998, volume: 1998, edition: B16
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X-ray scattering study of interface roughness correlation in Mo/Si and Ti/C multilayers for X-UV optics
Physica B condensed matter, year: 1998, volume: 253(1998), edition: -
1996
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Dynamical theory of diffraction of particles: Ewald approach. I.
Dynamical theory of diffraction of particles: Ewald approach, year: 1996, number of pages: 34 s.
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Interface evolution after thermal treatment of Tungsten/ Silicon multilayers
Acta Crystallographica A, Suppl., year: 1996, volume: 52, edition: -
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X-ray studies of surfaces and interfaces
Bulletin Krystalografické společnosti Materials Structure, year: 1996, volume: 3, edition: 3