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Titlebook: Electron Transport in Nanosystems; Janez Bonča,Sergei Kruchinin Conference proceedings 2008 Springer Science+Business Media B.V. 2008 Bios

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https://doi.org/10.1007/978-0-230-80213-1reparation, experimental design, measurement electronics, and data collection. Successful experiments require both the ability to manufacture small samples and to successfully and accurately study their novel properties. Here, we discuss some aspects and recent advancements of general measurement te
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https://doi.org/10.1007/978-1-349-13279-9uperconducting critical field .. this material displays NFL behavior in transport and thermodynamic properties, pointing at a Quantum Critical Point (QCP) at .., and hinting at the presence of magnetic fluctuations, probably due to an AFM order superseded by the superconductivity. In the High-Field-
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Teaching Research Methods Online,materials and graphite is presented. We specify individual features of each class of these materials and common features of interlayer tunneling. They are characterized by the layered crystalline structure of those materials. We emphasize the importance of the phase interlayer coupling in supercondu
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How to Write Better Medical Papersontain superconducting charge carriers which are Cooper-paired holes; (iv) have holes with a nodeless, .-wave pairing function that is consistent with a gap function of .-wave symmetry; and (v) involve pairing of holes by Coulomb interactions (not by phonons). The .-type superconductivity in YBa.Cu.
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https://doi.org/10.1007/978-0-230-30496-3imball model initially in equilibrium, and then driven by a large uniform electric field turned on at time . = 0. We use exact dynamical mean-field theory, extended to nonequilibrium situations, to solve the problem. We focus on the accuracy of the numerics and on the interesting new features brough
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