Radiation damage in SiN and SiC films prepared by low-pressure chemical vapor deposition (LPCVD) is reported. A pattern placement error of 0.05 μm at the edge of the x-ray radiation area was introduced for SiN membranes by a radiation dose of 12 kJ/cm2. The electron spin resonance (ESR) signals with a g value of 2.004, which was attributed to the Si–N dangling bond, were observed. Both the error and the spin density increased with increasing radiation dose up to 12 kJ/cm2 and remained constant thereafter. The error was explained as the result of Si–N bond scission caused by x-ray radiation, leading to tensile stress relaxation in the radiated area. In the case of SiC films, a pattern placement error was less than a detection limit of 0.03 μm for a radiation dose of 10 kJ/cm2. ESR signals with a g value of 2.003, being attributed to the Si–C dangling bond, were observed. However, the spin density in this case did not change by radiation up to 20 kJ/cm2. It is inferred that the LPCVD SiC membrane is damage free to x-ray radiation.
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Itoh et al. (1991) studied this question.