In quasi-one-dimensional channels formed in the two-dimensional electron gas of an Alₓ{Ga}_{1{{-}}x}$As/GaAs heterostructure, the second derivative ${d}²$V/${dI}²$ of the voltage-current characteristic is measured at low temperatures as a function of the voltage drop V over the channel length. In increasing the lateral confinement, strong resonant structures appear at voltages V that correspond to energies of GaAs phonon density-of-states maxima for acoustical as well as optical phonons. Compared with metal point-contact spectroscopy, this technique offers reproducible tunability of buried point contacts.
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Bever et al. (1991) studied this question.
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