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Titlebook: Electrically Driven Quantum Dot Based Single-Photon Sources; Modeling and Simulat Markus Kantner Book 2020 The Editor(s) (if applicable) an

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Hybrid Quantum-Classical Modeling of Electrically Driven Quantum Light Sources,g the van Roosbroeck system to a Markovian quantum master equation in Lindblad form. The Lindblad master equation for a quantum system weakly coupled to a carrier reservoir is derived under the additional constraint of a charge conserving system-reservoir interaction. Subsequently, a new hybrid quan
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Hybrid Simulation of an Electrically Driven Single-Photon Source,e-photon source based on a single QD embedded in a semiconductor pin-diode is investigated by numerical simulations. The numerical method introduced before is extended towards the hybrid model. Simulation results are presented for stationary and pulsed electrical excitation. A critical discussion of
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Book 2020 device engineers will need new simulation tools for the design and optimization of quantum light sources, which combine classical device physics with cavity quantum electrodynamics. This thesis aims to provide a holistic description of single-photon emitting diodes by bridging the gap between micro
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Hybrid Simulation of an Electrically Driven Single-Photon Source,efore is extended towards the hybrid model. Simulation results are presented for stationary and pulsed electrical excitation. A critical discussion of the numerical results and an outlook on possible extensions of the approach are given.
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Hard-Pressed for a Choice of Technology,sources based on semiconductor quantum dots. Therefore a broad range of different topics is treated and connected to methodically advance the state-of-the-art—from semi-classical device physics and elements of non-equilibrium thermodynamics to the theory of open quantum systems.
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