Deposition of thin films using low energy, mass-separated ion beams is a potentially important low temperature method of producing epitaxial layers. In these experiments silicon films were grown on Si (001) substrates using 10–200 eV 28Si+ and 30Si+ ions at substrate temperatures in the range 273–1073 K, under ultrahigh-vacuum conditions (deposition pressure View the MathML source). The film crystalhnity was assessed in situ using medium energy ion scattering (MEIS). Films of crystallinity comparable to bulk samples were grown using 10–40 eV 28Si+ and 30Si+ ions at deposition temperatures in the range 623–823 K. These experiments confirmed the role of key experimental parameters such as ion energy, substrate temperature during deposition, a...
This thesis work has involved studying epitaxial growth of single crystal silicon thin films using a...
We report on the growth technique and electrical properties of epitaxial Si films grown at low tempe...
Thin film silicon solar cells are produced by using plasma deposition techniques. With this techniqu...
Epitaxial crystal growth using an energy- and mass-analysed ion beam can provide insights into the f...
The direct deposition in thin films and the production of very shallow junctions by ultralow energy ...
Epitaxial Ag films were grown on native oxide covered Si(1 0 0) substrates by an ion beam sputter de...
In this paper we report on homoepitaxial growth of Si thin films at substrate temperatures Ts 500 65...
The effect of substrate temperature on the crystallinity and stress of ion beam sputtered silicon on...
This research investigated the effects of the ion beam assisted deposition process on the interdiffu...
In this work, we present the structural and the electrical qualities of thin Si films which are homo...
Low-temperature (<= 200 degrees C) epitaxial growth yields precise thickness, doping, and thermal-bu...
The bombardment of growing films with energetic ions has been investigated in order to understand th...
Fabrication of thin film silicon solar cells on cheap plastics or paper-like substrate requires depo...
Various processes can generate energetic particles suitable for thin film deposition. In some more c...
The work is aimed at investigating the effects of charged particle bombardment on the preferential d...
This thesis work has involved studying epitaxial growth of single crystal silicon thin films using a...
We report on the growth technique and electrical properties of epitaxial Si films grown at low tempe...
Thin film silicon solar cells are produced by using plasma deposition techniques. With this techniqu...
Epitaxial crystal growth using an energy- and mass-analysed ion beam can provide insights into the f...
The direct deposition in thin films and the production of very shallow junctions by ultralow energy ...
Epitaxial Ag films were grown on native oxide covered Si(1 0 0) substrates by an ion beam sputter de...
In this paper we report on homoepitaxial growth of Si thin films at substrate temperatures Ts 500 65...
The effect of substrate temperature on the crystallinity and stress of ion beam sputtered silicon on...
This research investigated the effects of the ion beam assisted deposition process on the interdiffu...
In this work, we present the structural and the electrical qualities of thin Si films which are homo...
Low-temperature (<= 200 degrees C) epitaxial growth yields precise thickness, doping, and thermal-bu...
The bombardment of growing films with energetic ions has been investigated in order to understand th...
Fabrication of thin film silicon solar cells on cheap plastics or paper-like substrate requires depo...
Various processes can generate energetic particles suitable for thin film deposition. In some more c...
The work is aimed at investigating the effects of charged particle bombardment on the preferential d...
This thesis work has involved studying epitaxial growth of single crystal silicon thin films using a...
We report on the growth technique and electrical properties of epitaxial Si films grown at low tempe...
Thin film silicon solar cells are produced by using plasma deposition techniques. With this techniqu...