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Transport through cavities with tunnel barriers: a semiclassical analysis
Authors:M Schreier  K Richter  G-L Ingold  RA Jalabert
Institution:Institut für Physik, Universit?t Augsburg, 86135, Augsburg, Germany
Max-Planck-Institut für Physik komplexer Systeme, N?thnitzer Str. 38, 01187, Dresden, Germany
Université Louis Pasteur,IPCMS-GEMME, 23 rue du Loess, 67037, Strasbourg Cedex, France
Abstract:We study the influence of a tunnel barrier on the quantum transport through a circular cavity. Our analysis in terms of classical trajectories shows that the semiclassical approaches developed for ballistic transport can be adapted to deal with the case where tunneling is present. Peaks in the Fourier transform of the energy-dependent transmission and reflection spectra exhibit a nonmonotonic behaviour as a function of the barrier height in the quantum mechanical numerical calculations. Semiclassical analysis provides a simple qualitative explanation of this behaviour, as well as a quantitative agreement with the exact calculations. The experimental relevance of the classical trajectories in mesoscopic and microwave systems is discussed. Received: 23 October 1997 / Received in final form and Accepted: 11 March 1998
Keywords:PACS  73  23  Ad Ballistic transport - 03  65  Sq Semiclassical theories and applications
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