Title of article :
New PLAD apparatus and fabrication of epitaxial films
and junctions of functional materials: SiC, GaN,
ZnO, diamond and GMR layers
Author/Authors :
Hachizo Muto *، نويسنده , , Takeshi Kusumori، نويسنده , , Toshiyuki Nakamura، نويسنده , , Takashi Asano، نويسنده , , Takahiro Hori، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Abstract :
We have developed a new pulsed laser ablation–deposition (PLAD) apparatus and techniques for fabricating films of high-temperature or
functional materials, including two short-wavelength lasers: (a) a YAG 5th harmonic (213 nm) and (b) Raman-shifted lasers containing vacuum
ultraviolet light; also involved are (c) a high-temperature heater with a maximum temperature of 1350 8C, (d) dual-target simultaneous ablation
mechanics, and (e) hybrid PLAD using a pico-second YAG laser combined with (c) and/or (d). Using the high-T heater, hetero-epitaxial films of
3C–, 2H– and 4H–SiC have been prepared on sapphire-c. In situ p-doping for GaN epitaxial films is achieved by simultaneous ablation of GaN and
Mg targets by (d) during film growth. Junctions such as pGaN (Mg-doped)-film/n-SiC(0 0 0 1) substrate and pGaN/n-Si(1 1 1) show good diode
characteristics. Epitaxial films with a diamond lattice can be grown on the sapphire-c plane by hybrid PLAD (e) with a high-T heater using a 6HSiC
target. High quality epitaxial films of ZnO are grown by PLAD by introducing a low-temperature self-buffer layer; magnetization of
ferromagnetic materials is enforced by overlaying on a ferromagnetic lattice plane of an anti-ferromagnetic material, showing the value of the
layer-overlaying method in improving quality. The short-wavelength lasers are useful in reducing surface particles on functional films, including
superconductors.
Keywords :
PLAD apparatus , epitaxial film , Functional material
Journal title :
Applied Surface Science
Journal title :
Applied Surface Science