The exciton-to-free-carrier transition in GaAs and In x Ga 1Ϫx As V-shaped quantum wires is revealed by means of temperature-dependent magnetoluminescence experiments. The experimental results are in excellent agreement with the diamagnetic shift obtained from a solution of the full two-dimensional Schrödinger equation for electrons and holes including magnetic-field and excitonic effects. In the GaAs wires, the exciton-tofree-carrier transition is found to occur at temperature consistent with the exciton binding energies. In the In x Ga 1Ϫx As wires the diamagnetic shift of the luminescence is found to be free-carrier-like, independent of temperature, due to the weakening of the exciton binding energy induced by the internal piezoelectric field.
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