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Electron spin resonance characterization of trapping centers in Unibond{reg_sign} buried oxides

Journal Article · · IEEE Transactions on Nuclear Science
DOI:https://doi.org/10.1109/23.556846· OSTI ID:443032
 [1]; ;  [2]
  1. Dynamics Research Corp., Beaverton, OR (United States). Commercial Systems
  2. Pennsylvania State Univ., University Park, PA (United States). Dept. of Engineering Science and Mechanics

Electron spin resonance and capacitance vs. voltage measurements are used to evaluate the radiation response of Unibond buried oxides. When damaged by hole injection, it is found that Unibond{reg_sign} buried oxides exhibit a rough correspondence between E{prime} centers and positive charge as well as generation of P{sub b} centers at the Unibond buried oxide/Si interface. In these respects, Unibond buried oxides qualitatively resemble thermal SiO{sub 2}. However, a hydrogen complexed E{prime} center known as the 74 G doublet is also detected in the Unibond buried oxides. This defect is not detectable in thermal SiO{sub 2} under similar circumstances. Since the presence of 74 G doublet center is generally indicative of very high hydrogen content and since hydrogen is clearly a significant participant in radiation damage, this result suggests a qualitative difference between the radiation response of Unibond and thermal SiO{sub 2}. Unibond results are also compared and contrasted with similar investigations on separation-by-implanted-oxygen (SIMOX) buried oxides. Although the charge trapping response of Unibond buried oxides may be inferior to that of radiation hardened thermal SiO{sub 2}, it appears to be more simple and superior to that of SIMOX buried oxides.

OSTI ID:
443032
Report Number(s):
CONF-960773--
Journal Information:
IEEE Transactions on Nuclear Science, Journal Name: IEEE Transactions on Nuclear Science Journal Issue: 6 Vol. 43; ISSN 0018-9499; ISSN IETNAE
Country of Publication:
United States
Language:
English

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