National Repository of Grey Literature 8 records found  Search took 0.00 seconds. 
Adaptation of the UHV SEM system for growth and characterization of nanostructures
Skladaný, Roman ; Mach, Jindřich (referee) ; Páleníček, Michal (advisor)
This bachelor thesis presents mechanical design of an objective protection of ultrahigh vacuum scanning electron microscope (UHV SEM), which is a part of a complex modular UHV system used for growth, observation and characterisation of nanostructures. Main physical and technical working principles of the UHV SEM system are explained. Furthermore, adaptation of a Knudsen cell used for growth of ultrathin layers in the UHV SEM system is described. Finally, a mechanical design of a shutter reducing overheating and contamination of objective during in situ growth and observation of nanostructures is drafted. The objective shutter also protects the sample from ambient heat radiation in case that sample is cooled to cryogenic temperatures.
Design and Construction of an Effusion Cell for Growth of Ultrathin Layers
Křápek, Ondřej ; Voborný, Stanislav (referee) ; Mach, Jindřich (advisor)
This Bachelor's work deals with the design, documentation and construction of effusion cell for deposition of ultrathin layers of various materials in conditions of ultrahigh vacuum. After fabrication and assemblage the effusion cell was placed to an ultrahigh vacuum chamber (p ~ 10-5 Pa) where the first testing deposition of a silver ultrathin film on Si (111) substrate was performed. This sample was studied by X-ray photoelectron spectroscopy and atomic force microscopy.
The deposition of Al and AlN ultrathin layers on silicon and graphene substrate
Řihák, Radek ; Čech, Vladimír (referee) ; Mach, Jindřich (advisor)
This master's thesis deals with preparation and analysis of ultrathin films of aluminum and aluminum nitride. Films were prepared by effusion cells designed in previous bachelor's thesis. Cell construction and testing is included in this thesis. Behavior of aluminum on silicon dioxide, silicon and graphene was studied. Preparation of aluminum nitride by effusion cell and nitrogen ion source is described.
Design of an effusion cell for the deposition of Al ultrathin layers
Řihák, Radek ; Voborný, Stanislav (referee) ; Mach, Jindřich (advisor)
This Bachelor's thesis deals with design and construction of the effusion cell for deposition ultrathin layers of aluminum in ultrahigh vacuum conditions. Two types of effusion were designed. Differences are only in type of heating. The first one exploit energy of accelerated electrons and the second one exploit thermal radiation. Anothe parts of cells are fully interchangeable.
Adaptation of the UHV SEM system for growth and characterization of nanostructures
Skladaný, Roman ; Mach, Jindřich (referee) ; Páleníček, Michal (advisor)
This bachelor thesis presents mechanical design of an objective protection of ultrahigh vacuum scanning electron microscope (UHV SEM), which is a part of a complex modular UHV system used for growth, observation and characterisation of nanostructures. Main physical and technical working principles of the UHV SEM system are explained. Furthermore, adaptation of a Knudsen cell used for growth of ultrathin layers in the UHV SEM system is described. Finally, a mechanical design of a shutter reducing overheating and contamination of objective during in situ growth and observation of nanostructures is drafted. The objective shutter also protects the sample from ambient heat radiation in case that sample is cooled to cryogenic temperatures.
The deposition of Al and AlN ultrathin layers on silicon and graphene substrate
Řihák, Radek ; Čech, Vladimír (referee) ; Mach, Jindřich (advisor)
This master's thesis deals with preparation and analysis of ultrathin films of aluminum and aluminum nitride. Films were prepared by effusion cells designed in previous bachelor's thesis. Cell construction and testing is included in this thesis. Behavior of aluminum on silicon dioxide, silicon and graphene was studied. Preparation of aluminum nitride by effusion cell and nitrogen ion source is described.
Design of an effusion cell for the deposition of Al ultrathin layers
Řihák, Radek ; Voborný, Stanislav (referee) ; Mach, Jindřich (advisor)
This Bachelor's thesis deals with design and construction of the effusion cell for deposition ultrathin layers of aluminum in ultrahigh vacuum conditions. Two types of effusion were designed. Differences are only in type of heating. The first one exploit energy of accelerated electrons and the second one exploit thermal radiation. Anothe parts of cells are fully interchangeable.
Design and Construction of an Effusion Cell for Growth of Ultrathin Layers
Křápek, Ondřej ; Voborný, Stanislav (referee) ; Mach, Jindřich (advisor)
This Bachelor's work deals with the design, documentation and construction of effusion cell for deposition of ultrathin layers of various materials in conditions of ultrahigh vacuum. After fabrication and assemblage the effusion cell was placed to an ultrahigh vacuum chamber (p ~ 10-5 Pa) where the first testing deposition of a silver ultrathin film on Si (111) substrate was performed. This sample was studied by X-ray photoelectron spectroscopy and atomic force microscopy.

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