arXiv · cond-mat/9908096
Non-adiabaticity and single-electron transport driven by surface acoustic waves
Abstract
Single-electron transport driven by surface acoustic waves (SAW) through a narrow constriction, formed in two-dimensional electron gas, is studied theoretically. Due to long-range Coulomb interaction, the tunneling coupling between the electron gas and the moving minimum of the SAW-induced potential rapidly decays with time. As a result, nonadiabaticiy sets a limit for the accuracy of the quantization of acoustoelectric current.
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Karsten Flensberg, Qian Niu, Michael Pustilnik. 1999-10-25. Non-adiabaticity and single-electron transport driven by surface acoustic waves. https://doi.org/10.1103/physrevb.60.r16291
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