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Titlebook: Self-Organized Quantum Dots for Memories; Electronic Propertie Tobias Nowozin Book 2014 Springer International Publishing Switzerland 2014

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Book 2014rrier storage in addition to the localization energy. The second aim is to study the coupling between a layer of self-organized QDs and a two-dimensional hole gas (2DHG), which is relevant for the read-out process in memory systems. The investigation yields the discovery of the many-particle ground
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https://doi.org/10.1007/978-3-319-01970-3Coupling of Quantum Dots to a Two-dimensional System; Deep-Level Transient Spectroscopy (DLTS); Embedd
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Measurement Methods,on to the investigation of the electronic properties of QDs is described. The second part explains a time-resolved measurement method, from which the many-particle hole energy levels in a QD ensemble are derived, and the emission and capture processes between a QD ensemble and a 2DHG are studied.
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Carrier Dynamics in Quantum Dots Coupled to a 2DHG,hole gas (2DHG). In total, three samples are investigated, of which each has a different tunneling barrier between the QDs and the 2DHG, resulting in a different coupling strength. The samples are analyzed using capacitance-voltage (C-V) spectroscopy and time-resolved measurements of the source-drain current which flows through the 2DHG.
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