68 research outputs found

    Thermoelectrics with Coulomb coupled quantum dots

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    In this article we review the thermoelectric properties of three terminal devices with Coulomb coupled quantum dots (QDs) as observed in recent experiments [1,2]. The system we consider consists of two Coulomb-blockade QDs one of which can exchange electrons with only a single reservoir (heat reservoir) while the other dot is tunnel coupled to two reservoirs at a lower temperature (conductor). The heat reservoir and the conductor interact only via the Coulomb-coupling of the quantum dots. It has been found that two regimes have to be considered. In the first one heat flow between the two systems is small. In this regime thermally driven occupation fluctuations of the hot QD modify the transport properties of the conductor system. This leads to an effect called thermal gating. Experiment have shown how this can be used to control charge flow in the conductor by means of temperature in a remote reservoir. We further substantiate the observations with model calculations and implications for the realization of an all-thermal transistor are discussed. In the second regime, heat flow between the two systems is relevant. Here the system works as a nano scale heat engine, as proposed recently [3]. We review the conceptual idea, its experimental realization and the novel features arising in this new kind of thermoelectric device such as decoupling of heat and charge flow.Comment: 18 pages, 10 figures, submitted to Comptes Rendue Physiqu

    Evaluierung von Wintergerste (Hordeum vulgare) auf Anfälligkeit gegenüber Flugbrand (Ustilago nuda) und Streifenkrankheit (Pyrenophora graminea)

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    Saatgutübertragbare Krankheiten wie Flugbrand (Ustilago nuda) und Streifenkrankheit (Pyrenophora graminea) bei Wintergerste (Hordeum vulgare) stellen ein großes Problem für den ökologischen Landbau und die ökologische Saatgutvermehrung dar. Die 'Forschung & Züchtung Dottenfelderhof' (FZD) führt seit mehreren Jahren Evaluierungen von Wintergerste-Sorten und Zuchtstämmen in zwei separaten Versuchen auf Resistenz gegenüber beiden Krankheiten durch. Insgesamt wurden sechs eigene Zuchtstämme mit Resistenz gegenüber Flugbrand und einer geringen Anfälligkeit gegenüber Streifenkrankheit gefunden. Ein Zuchtstamm war resistent gegenüber beiden Krankheiten

    Proximity Induced Superconductivity in CdTe-HgTe Core-Shell Nanowires

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    In this letter we report on proximity superconductivity induced in CdTe-HgTe core-shell nanowires, a quasi-one-dimensional heterostructure of the topological insulator HgTe. We demonstrate a Josephson supercurrent in our nanowires contacted with superconducting Al leads. The observation of a sizable IcRnI_c R_n product, a positive excess current and multiple Andreev reflections up to fourth order further indicate a high interface quality of the junctions.Comment: Accepted for publication in Nano Letter

    Overlapping Top Gate Electrodes based on Low Temperature Atomic Layer Deposition for Nanoscale Ambipolar Lateral Junctions

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    We present overlapping top gate electrodes for the formation of gate defined lateral junctions in semiconducting layers as an alternative to the back gate/top gate combination and to the split gate configuration. The optical lithography microfabrication of the overlapping top gates is based on multiple layers of low-temperature atomic layer deposited hafnium oxide, which acts as a gate dielectric and as a robust insulating layer between two overlapping gate electrodes exhibiting a large dielectric breakdown field of > 1E9 V/m. The advantage of overlapping gates over the split gate approach is confirmed in model calculations of the electrostatics of the gate stack. The overlapping gate process is applied to Hall bar devices of mercury telluride in order to study the interaction of different quantum Hall states in the nn', np, pn and pp' regime.Comment: 7 pages, 3 figure

    Temperature-driven transition from a semiconductor to a topological insulator

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    We report on a temperature-induced transition from a conventional semiconductor to a two-dimensional topological insulator investigated by means of magnetotransport experiments on HgTe/CdTe quantum well structures. At low temperatures, we are in the regime of the quantum spin Hall effect and observe an ambipolar quantized Hall resistance by tuning the Fermi energy through the bulk band gap. At room temperature, we find electron and hole conduction that can be described by a classical two-carrier model. Above the onset of quantized magnetotransport at low temperature, we observe a pronounced linear magnetoresistance that develops from a classical quadratic low-field magnetoresistance if electrons and holes coexist. Temperature-dependent bulk band structure calculations predict a transition from a conventional semiconductor to a topological insulator in the regime where the linear magnetoresistance occurs.Comment: 7 pages, 6 figure

    Dirac-screening stabilized surface-state transport in a topological insulator

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    We report magnetotransport studies on a gated strained HgTe device. This material is a threedimensional topological insulator and exclusively shows surface state transport. Remarkably, the Landau level dispersion and the accuracy of the Hall quantization remain unchanged over a wide density range (3×1011cm2<n<1×1012cm23 \times 10^{11} cm^{-2} < n < 1 \times 10^{12} cm^{-2}). This implies that even at large carrier densities the transport is surface state dominated, where bulk transport would have been expected to coexist already. Moreover, the density dependence of the Dirac-type quantum Hall effect allows to identify the contributions from the individual surfaces. A kpk \cdot p model can describe the experiments, but only when assuming a steep band bending across the regions where the topological surface states are contained. This steep potential originates from the specific screening properties of Dirac systems and causes the gate voltage to influence the position of the Dirac points rather than that of the Fermi level.Comment: 12 pages 4 figure
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