DocumentCode
1442775
Title
The effect of surface roughness on the radiative properties of patterned silicon wafers
Author
Hebb, Jeffrey P. ; Jensen, Klavs F. ; Thomas, Jack
Author_Institution
Dept. of Mech. Eng., MIT, Cambridge, MA, USA
Volume
11
Issue
4
fYear
1998
fDate
11/1/1998 12:00:00 AM
Firstpage
607
Lastpage
614
Abstract
The radiative properties of patterned silicon wafers have a major impact on the two critical issues in rapid thermal processing (RTP), namely wafer temperature uniformity and wafer temperature measurement. The surface topography variation of the die area caused by patterning and the roughness of the wafer backside can have a significant effect on the radiative properties, but these effects are not well characterized. We report measurements of room temperature reflectance of a memory die, logic die, and various multilayered wafer backsides. The surface roughness of the die areas and wafer backsides is characterized using atomic force microscopy (AFM). These data are subsequently used to assess the effectiveness of thin film optics in providing approximations for the radiative properties of patterned wafers for RTP applications
Keywords
atomic force microscopy; elemental semiconductors; integrated circuit measurement; radiative transfer; rapid thermal processing; reflectivity; silicon; spectral methods of temperature measurement; surface topography; temperature distribution; Si; atomic force microscopy; die area; multilayered wafer backsides; patterned wafers; radiative properties; rapid thermal processing; room temperature reflectance; surface roughness; surface topography variation; thin film optics; wafer temperature measurement; wafer temperature uniformity; Atomic force microscopy; Atomic measurements; Logic; Rapid thermal processing; Reflectivity; Rough surfaces; Silicon; Surface roughness; Surface topography; Temperature measurement;
fLanguage
English
Journal_Title
Semiconductor Manufacturing, IEEE Transactions on
Publisher
ieee
ISSN
0894-6507
Type
jour
DOI
10.1109/66.728558
Filename
728558
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