An infrared and secondary ion mass spectrometry study of H diffusion in undoped, rf-sputtered multilayered hydrogenated and deuterated amorphous silicon is reported. The results indicate that the long-range motion of atomic H is suppressed when the microvoid content exceeds a critical value associated with an initial SiH₂ and SiH₃ density Nd0{}7±{}1 at.%. The strong power-law time dependence of the diffusion constant (exponent {α}{}0.75±{}0.15) somewhat below this value of Nd0 is disucssed in relation to H migration mediated by mobile intrinsic defects, and the presence of an exponential distribution of traps for these defects and/or hydrogen.
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Shinar et al. (1989) studied this question.
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