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Enhanced and Suppressed Shot Noise in Quantum Dot Systems

机译:量子点系统中增强和抑制射击噪声

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Quantum dots are quasi zero-dimensional systems in semiconductors and they represent promising candidates for future applications in quantum information processing. Their electronic properties are influenced by interaction and correlation effects, which are not clearly revealed in simple transport experiments. Shot noise measurements allow to investigate such interaction and correlation effects in detail and can lead to astonishing results.We studied shot noise in electrical transport through single and coupled quantum dots and found for single quantum dots suppressed shot noise in respect to Poissonian noise as, e.g. is assumed in the recently developed technique of spin noise spectroscopy. Whereas the suppressed shot noise in single dots weakly coupled to the leads can be explained in simple models using emitter and collector tunnelling rates, for strong coupling an additional suppression is observed where interaction effects have to be taken into account. In recent measurements on coupled quantum dots an astonishing enhancement of shot noise, i.e. super-Poissonian noise, was found being in stark contrast to the suppression of shot noise found for single quantum dots. This enhancement of shot noise cannot be understood in a single-particle picture neglecting interactions. An enhanced shot noise could result from a coupling to other stacks of coupled quantum dots or from interaction and coherence effects within one stack.
机译:量子点是半导体中的准零维系统,它们代表了对量子信息处理中未来应用的有希望的候选者。它们的电子性质受到相互作用和相关效果的影响,这在简单的运输实验中没有明确揭示。射击噪声测量允许详细研究这种相互作用和相关效果,可以通过单个和耦合量子点研究电气运输中的射击噪声,并为单量子点发现捕获斑块噪声,例如泊松噪声。在最近开发的旋转噪声光谱技术中假设。然而,在使用发射器和集电极隧道速率的简单模型中,可以在简单的模型中解释单点中的抑制射击噪声,而使用发射器和集电极隧道速率,则为了强烈耦合,观察到额外的抑制,其中必须考虑交互效应。在最近耦合量子点的测量中,发现射击噪声的令人惊讶的增强,即超级泊松噪声,被发现与针对单量子点发现的镜头噪声的抑制鲜明对比。在忽略相互作用的单粒子图像中,不能理解射门噪声的这种增强。增强的射击噪声可以由耦合到耦合量子点的其他堆叠或在一个堆叠内的相互作用和相干效应中产生。

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