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Titlebook: Quantum Dots for Quantum Information Technologies; Peter Michler Book 2017 Springer International Publishing AG 2017 Resonance Fluorescenc

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楼主: Inoculare
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A Self-assembled Quantum Dot as Single Photon Source and Spin Qubit: Charge Noise and Spin Noiseom the spin noise arising from fluctuations in the nuclear spin bath. Presented here is a series of experiments which probe the noise in advanced quantum dot devices: single quantum dot resonance fluorescence as a sensor of both charge noise and spin noise; nuclear magnetic resonance on the quantum
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Theory of Quantum Light Sources and Cavity-QED Emitters Based on Semiconductor Quantum Dotseories. In combination with a quantization of the electromagnetic field, these models allow for a quantitative description of device properties and non-classical effects that render few-emitter microcavity systems so useful for applications in the quantum-information technologies.
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Book 2017ic integrated circuits is emphasized. The latest theoretical and experimental studies of phonon-dressed light matter interaction, single-dot lasing and resonance fluorescence in QD cavity systems are also provided. The book is written by the leading experts in the field..
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Book 2017 with quantum dots. In particular, it addresses single quantum dot spin manipulation, spin-photon entanglement and the generation of single-photon and entangled photon pair states with nearly ideal properties. The role of semiconductor microcavities, nanophotonic interfaces as well as quantum photon
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Coherent Control of Dark Excitons in Semiconductor Quantum Dotsully controlled using short optical pulses. We also study its behavior in an externally applied magnetic field and present a method for its optical depletion from the quantum dot. Our results demonstrate that the dark exciton is an excellent matter spin qubit.
发表于 2025-3-26 07:01:37 | 显示全部楼层
The Mesoscopic Nature of Quantum Dots in Photon Emissionhe same electronic transition. The multi-atomic nature also causes a collective mesoscopic effect in monolayer-fluctuation GaAs quantum dots, namely single-photon superradiance, giving rise to a giant light-matter coupling strength.
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Single-Photon Sources Based on Deterministic Quantum-Dot Microlensesexceeding 90% under pulsed p-shell excitation. Mechanisms limiting the indistinguishability are discussed in terms of spectral diffusion at a nanosecond time-scale and phonon-induced dephasing. The chapter closes with an outlook on electrically driven quantum dot microlenses, the application of anti-reflection coatings and future perspectives.
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Photonic Integrated Circuits with Quantum Dotss on the basic design of integrated photonics and the realizations of the on-chip equivalents of elementary building elements which are needed for quantum computation. This includes the performance analysis of fabricated devices as beam splitters and their compatibility with quantum dots as integrated single-photon sources.
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