DocumentCode
1636199
Title
Investigation in the effect of nitrogen incorporation in heteroepitaxial diamond film growth, texture, morphology, and crystalline quality
Author
Mossbrucker, J. ; Huang, W.S. ; Wright, B. ; Ayres, V. ; Khatami, S. ; Asmussen, J.
Author_Institution
Dept. of Electr. Eng., Michigan State Univ., East Lansing, MI, USA
fYear
1998
Firstpage
222
Abstract
Summary form only given. It has been shown that even small concentrations of nitrogen have a substantial effect on the growth of CVD diamond films, while larger concentrations may result in degraded and rough growth. In the present study we show the effect of nitrogen concentration on the growth, texture, morphology, and crystalline quality of CVD diamond films. All films are heteroepitaxially grown on a 3 inch silicon substrate and are scratch-seeded with a seeding density of 10/sup 9//cm/sup 2/. A computer controlled 5 inch discharge 2.45GHz microwave plasma reactor with ultra-high vacuum gas handling systems combined with optical emission spectroscopy allows exact control of the gas phase concentrations and reactor input variables. Nitrogen gas phase concentration is varied from l0ppm to over 1000ppm and is controlled by the measurement of CN bands in the optical emission spectrum of the plasma. Pressure ranges from 38-50 Torr, methane/hydrogen from 0.5-2%, and flow rate from 50-200 sccm. Growth and morphology are carefully determined using SEM while texture is obtained using XRD. Crystalline quality is measured by determining the FWHM of the diamond Raman peak at 1332/cm using unpolarized micro-Raman spectroscopy. Detailed growth, texture, morphology, and crystalline quality maps are given to show the sequential effect of increasing nitrogen versus all other reactor input variables.
Keywords
X-ray diffraction; diamond; impurities; plasma CVD; plasma impurities; scanning electron microscopy; texture; 2.45 GHz; 38 to 50 torr; C:N; CN bands; CVD film growth; N concentration; N incorporation effects; Raman peak; computer controlled 5 inch discharge; crystalline quality; crystalline quality maps; degraded growth; gas phase concentration; gas phase concentrations; heteroepitaxial diamond film growth; heteroepitaxially grown diamond films; micro-Raman spectroscopy; microwave plasma reactor; morphology; optical emission spectroscopy; optical emission spectrum; reactor input variables; rough growth; scratch-seeded films; seeding density; texture; ultra-high vacuum gas handling systems; Control systems; Crystallization; Inductors; Morphology; Nitrogen; Optical control; Optical films; Optical variables control; Plasma measurements; Spectroscopy;
fLanguage
English
Publisher
ieee
Conference_Titel
Plasma Science, 1998. 25th Anniversary. IEEE Conference Record - Abstracts. 1998 IEEE International on
Conference_Location
Raleigh, NC, USA
ISSN
0730-9244
Print_ISBN
0-7803-4792-7
Type
conf
DOI
10.1109/PLASMA.1998.677740
Filename
677740
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