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Titlebook: Semiconductor Nanophotonics; Materials, Models, a Michael Kneissl,Andreas Knorr,Axel Hoffmann Book 2020 Springer Nature Switzerland AG 2020

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Nitride Microcavities and Single Quantum Dots for Classical and Non-classical Light Emitters,techniques of such nitride-based microcavities and their active regions. Modern analytical techniques for structural and optical characterization of these complex heterostructures as presented in this chapter are essential to solve remaining challenges.
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Submonolayer Quantum Dots,ch agglomerations referred to as submonolayer quantum dots, which support an efficient exciton formation. Carrier localization properties of the submonolayer structures are further enhanced by alloying with antimony. In this chapter we address the growth, the structure, and the optical and optoelect
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Stressor-Induced Site Control of Quantum Dots for Single-Photon Sources,m dots. A design is developed that allows for the self-aligned growth of single quantum dots in the center of a circular mesa. Measurements of the strain tensor applying transmission-electron holography yield excellent agreement with the calculated strain field. Single-dot spectroscopy of site-contr
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Coherent and Incoherent Dynamics in Quantum Dots and Nanophotonic Devices,tical gain spectrally, dynamically, and energetically for applications in optical amplifiers, lasers or specially designed multi-section devices. This chapter is devoted to the investigation of carrier dynamics inside nanostructured gain media as well as to the dynamics of the resulting light output
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