A number of thin silicon films are deposited on crystalline silicon, native oxidized crystalline silicon, and optical quality fused quartz substrates through the use of ultra-high-vacuum evaporation at growth temperatures ranging from 98 to 572 \ub0C. An analysis of their grazing incidence X-ray diffraction and Raman spectra indicates that a phase transition, from amorphous-to-crystalline, occurs as the growth temperature is increased. Through a peak decomposition process, applied to the Raman spectroscopy results, the crystalline volume fractions associated with these samples are plotted as a function of the growth temperature for the different substrates considered. It is noted that the samples grown on the crystalline silicon substrates ...
The crystalline-amorphous transition during chemical vapour deposition of silicon has been studied. ...
A series of thin silicon films with different degrees of crystallinity were prepared by decompositio...
The temperature dependence of the optical properties for amorphous silicon is studied at wavelengths...
Conventional forms of silicon thin-film, prepared through the use of a plasma, offer a variety of at...
Thin silicon films of varying thickness were deposited on foreign substrates by electron-cyclotron r...
Low-temperature fine-crystalline silicon films grown by plasma-enhanced chemical vapour deposition (...
Low-temperature growth of microcrystalline silicon (mc-Si) is attractive for many optoelectronic dev...
In this work, silicon oxide thin films were synthesized via e-beam evaporation of silicon monoxide. ...
The technological importance of thin films of such materials as amorphous silicon and amorphous carb...
AbstractThe realization of crystalline silicon thin films on foreign substrates is an attractive alt...
Amorphous silicon films prepared by electron-beam evaporation have systematically and substantially ...
We study the amorphous to microcrystalline silicon films made at three laboratories by using Raman, ...
The specific heat C of e-beam evaporated amorphous silicon (a-Si) thin films prepared at various gro...
Silicon thin films are deposited using plasma enhanced chemical vapor deposition (PECVD) of silane, ...
Polycrystalline silicon films were chemically vapor deposited on oxidised silicon and quartz substra...
The crystalline-amorphous transition during chemical vapour deposition of silicon has been studied. ...
A series of thin silicon films with different degrees of crystallinity were prepared by decompositio...
The temperature dependence of the optical properties for amorphous silicon is studied at wavelengths...
Conventional forms of silicon thin-film, prepared through the use of a plasma, offer a variety of at...
Thin silicon films of varying thickness were deposited on foreign substrates by electron-cyclotron r...
Low-temperature fine-crystalline silicon films grown by plasma-enhanced chemical vapour deposition (...
Low-temperature growth of microcrystalline silicon (mc-Si) is attractive for many optoelectronic dev...
In this work, silicon oxide thin films were synthesized via e-beam evaporation of silicon monoxide. ...
The technological importance of thin films of such materials as amorphous silicon and amorphous carb...
AbstractThe realization of crystalline silicon thin films on foreign substrates is an attractive alt...
Amorphous silicon films prepared by electron-beam evaporation have systematically and substantially ...
We study the amorphous to microcrystalline silicon films made at three laboratories by using Raman, ...
The specific heat C of e-beam evaporated amorphous silicon (a-Si) thin films prepared at various gro...
Silicon thin films are deposited using plasma enhanced chemical vapor deposition (PECVD) of silane, ...
Polycrystalline silicon films were chemically vapor deposited on oxidised silicon and quartz substra...
The crystalline-amorphous transition during chemical vapour deposition of silicon has been studied. ...
A series of thin silicon films with different degrees of crystallinity were prepared by decompositio...
The temperature dependence of the optical properties for amorphous silicon is studied at wavelengths...