Internal transitions of confined hydrogenic excitons in type-I multiple-quantum-well structures have been observed and studied as a function of magnetic field (0--15 T) and quantum well width (80--200 {}). A highly sensitive technique that combines visible and far infrared methods, optically detected resonance spectroscopy, was employed, and revealed several internal excitonic transitions, with the 1s→2p₊ transition dominant. The energies of the 1s→2p₊ transition vs magnetic field are in very good agreement with variational calculations for the 80 and 125 {} wells. The strength of the intraexcitonic features was observed to be much weaker in the 200 {} well-width samples.
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Salib et al. (1996) studied this question.
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