A study on the residual stress measurement methods on chemical vapor deposition diamond films

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Diamond films were deposited on the p-type Si substrate with the hot filament chemical vapor deposition (HFCVD). Residual stresses in the films were measured in air by the laser curvature, the x-ray diffraction (XRD) d(phi psi) - sin(2) psi, and the Raman peak shift methods. All of the measuring methods showed similar behaviors of residual stress that changed from a compressive to a tensile stress with increasing the film thickness. However, values of residual stresses obtained through the Raman and XRD methods were 3-4 times higher than those of the curvature method. These discrepancies involved the setting of materials constants of CVD diamond film, and determination of a peak shifting on the XRD and Raman method. In order to elucidate the disparity, we measured a Young's moduli of diamond films by using the sonic resonance method. In doing so, the Raman and XRD peak shift were calibrated by bending diamond/Si beams with diamond films by a known amount, with stress levels known a priori from the beam theory, and by monitoring the peak shifts simultaneously. Results of each measuring method showed well coincidental behaviors of residual stresses which have the stress range from -0.5 GPa to +0.7 GPa, and an intrinsic stress was caused about +0.7 GPa with tensile stress.
Publisher
CAMBRIDGE UNIV PRESS
Issue Date
1998-11
Language
English
Article Type
Article
Keywords

INTRINSIC STRESS; SILICON; NUCLEATION; SUBSTRATE; RAMAN; GROWTH; CVD; ADHESION; STRAIN; LAYERS

Citation

JOURNAL OF MATERIALS RESEARCH, v.13, no.11, pp.3027 - 3033

ISSN
0884-2914
URI
http://hdl.handle.net/10203/77569
Appears in Collection
MS-Journal Papers(저널논문)
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