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Titlebook: Mesoscopic Electron Transport; Lydia L. Sohn,Leo P. Kouwenhoven,Gerd Schön Book 1997 Springer Science+Business Media Dordrecht 1997 Semico

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Magnetotunneling Spectroscopy: Studying Self-Organized Quantum Dots and Quantum Chaology,and the effect of chaotic motion on the quantum transport properties of semiconductor nanostructures. Section 2 examines the electronic properties of self-organized InAs quantum dots, grown by Stranskii-Krastanov epitaxy. The dots are incorporated in the AlAs barrier of a singlebarrier GaAs/AlAs/GaA
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Shot Noise in Mesoscopic Systems,ductors. The shot-noise power can be smaller than that of a Poisson process as a result of correlations in the electron transmission imposed by the Pauli principle. This suppression takes on simple universal values in a symmetric double-barrier junction (suppression factor 1/2), a disordered metal (
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Transport Theory of Interacting Quantum Dots,ands coupled weakly to leads (for reviews see Refs.[1-6]). Quantization of charge and tunneling through zero-dimensional states lead to many interesting phenomena in these systems. Adding a single charge to a small island costs the charging energy . /(. e./(2C) . being the length scale of the island
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The Proximity Effect in Mesoscopic Diffusive Conductors,with a superconducting one (S). Because of an action-reaction like principle, the order induced on the N side of the NS interface due to the presence of S is correlated with a weakening of the superconducting order on the S side due to the presence of N. Thus, the proximity effect is actually the di
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Ultrasmall Superconductors,y of superconductivity. In this chapter we will focus on two series of experiments which have probed the superconducting properties of small metal grains. The first issue that we will discuss is the nature of superconductivity in a sample that is electrically isolated, so as to have a . number of el
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The Superconducting Proximity Effect in Semiconductor-Superconductor Systems: Ballistic Transport, fold: First, the presence of superconducting electrodes can modify the normal (dissipative) transport. Second, the presence of two (or more) superconductors can allow a dissipationless supercurrent to flow through a normal conductor. In both cases . is the key underlying phenomenon. As we will show
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Scanning Probe Microscopes and their Applications,mena—some of which have already been highlighted in this book— have been observed in fabricated structures of length scale ∾50–100 nm. Because of the clear possibility that additional novel effects will become manifest at even smaller dimensions, there is strong motivation to develop: (1) fabricatio
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