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Interaction of electrons with optical phonons localized in a quantum well
Authors:J Požela  K Požela  V Jucienė  A Sužiedėlis  A S Shkolnik  S S Mikhrin  V S Mikhrin
Affiliation:1. Semiconductor Physics Institute, Vilnius, 01108, Lithuania
2. Ioffe Physicotechnical Institute, Russian Academy of Sciences, ul. Politekhnicheskaya 26, St. Petersburg, 194021, Russia
3. Innolume GmbH, 44263, Dortmund, Germany
Abstract:The scattering rate of electrons in a quantum well by localized polar optical and interface phonons is considered. The dependence of the force of the electron-phonon interaction on the frequency of optical phonons in materials of the heterostructure forming the electron and phonon quantum wells is determined. It is shown that, by varying the composition of semiconductors forming the quantum well and its barriers, it is possible to vary the scattering rates of electrons by a factor of several times. The scattering rates of electrons by polar optical phonons are calculated depending on the fractions In x and In y in the composition of semiconductors forming the In x Al1 ? x As/In y Ga1 ? y As quantum wells. Dependences of the mobility and saturated drift velocity of electrons in high electric fields and quantum wells In y Ga1 ? y As on the composition of the In x Al1 ? x As barriers introduced into quantum wells are determined experimentally. The electron mobility increases, while the saturated drift velocity decreases as the fraction of In x in the composition of barriers is increased.
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