An outline of infrared localized vibrational mode absorption spectroscopy relevant to silicon impurities in GaAs is presented. Absorption lines from Si Ga donors, Si As acceptors, Si Ga -Si As pairs, Si Ga -V Ga (Ga vacancy) pairs and a complex Si-X (involving Si As and V Ga ) have been identified as well as lines from Si Ga -Cu Ga , Si Ga -H, Si As H and Si Ga -B As pairs. These observations are related to the electrical properties of n-type Bridgman, liquid-encapsulated Czochralski and molecular beam epitaxial (MBE) (001) GaAs, and to p-type liquid phase epitaxial and MBE (111)A layers. The discussion relates to dynamic site switching, effects due to counter-doping with shallow acceptors, the solubility of silicon, and DX behaviour observed in homogeneously doped material and proposed for delta -doped MBE (001) layers. The major problem is to understand the processes that limit the maximum carrier concentration that can be achieved in n-type crystals.
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R.C. Newman (1994) studied this question.
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