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Titlebook: Low-Dimensional Electronic Systems; New Concepts Günther Bauer,Friedemar Kuchar,Helmut Heinrich Conference proceedings 1992 Springer-Verlag

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Three “Universal” Mesoscopic Josephson Effectsch are “universal” through the absence of a dependence on junction parameters. This paper is an extended abstract of a review article which will appear in: Proc. 14th Taniguchi Int. Symp. on “Physics of Mesoscopic Systems”, ed. by H. Fukuyama and T. Ando (Springer, Berlin, 1992).
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Springer Series in Solid-State Scienceshttp://image.papertrans.cn/l/image/588854.jpg
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Perspectives of Low-Dimensional Semiconductor Heterostructuresle I)since the explosion of the field in the early eighties, due to the appearance of two highly useful devices, the quantum well laser and the HEMT/TEGFET/MODFET/SDHT electron devices.. A very remarkable feature of the brief history of the field is that breakthroughs have been quite often due to un
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Electronic Energy Levels in Nanostructuresdimensional isotropic harmonic oscillator. Single particle excitation energies seem to dominate the spectrum. With the advent of improved technology experimental data indicate the necessity to refine this model. We consider deviations in the kinetic energy part (band structure effects) to demonstrat
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Phonon Studies of Low-Dimensional Structureszing magnetic fields. It also describes a number of recent experiments including studies of dissipation at the current entry and exit points of a Hall bar in quantizing magnetic fields, cyclotron phonon emission, phonon induced backscattering in the quantum Hall regime and phonon emission from excit
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Electron Transport in Antidot SuperlatticesThe repulsive potential of an antidot replaces the positively charged ion in a three-dimensional crystal leading to scattering of the carriers on the periodic lattice. The transport of electrons in antidot superlattices realized by different fabrication methods is reviewed. The focused ion beam tech
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Ballistic Electron Opticsn of photons in optical systems. Among the electron-optical structures we demonstrate are emitters, detectors, absorbers, and refractors. These advances may enable the design of new types of electronic circuits.
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