Abstract
Magnetotransport in GaAs/Ga 1− x Al x As heterostructures with a square array of antidots has been investigated. Single-particle relaxation times τ s are estimated from the amplitudes of Shubnikov–de Haas oscillations and two values of τ s are found at low and high magnetic fields. The critical field at which τ s changes corresponds to the magnetic field where the cyclotron diameter 2 R c is almost equal to the effective constriction length L c between two antidots. This suggests that the influence of scattering from antidots on τ s is different in the region where 2 R c> L c and where 2 R c< L c.
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