31 research outputs found

    Multi-dimensional modeling and simulation of semiconductor nanophotonic devices

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    Self-consistent modeling and multi-dimensional simulation of semiconductor nanophotonic devices is an important tool in the development of future integrated light sources and quantum devices. Simulations can guide important technological decisions by revealing performance bottlenecks in new device concepts, contribute to their understanding and help to theoretically explore their optimization potential. The efficient implementation of multi-dimensional numerical simulations for computer-aided design tasks requires sophisticated numerical methods and modeling techniques. We review recent advances in device-scale modeling of quantum dot based single-photon sources and laser diodes by self-consistently coupling the optical Maxwell equations with semiclassical carrier transport models using semi-classical and fully quantum mechanical descriptions of the optically active region, respectively. For the simulation of realistic devices with complex, multi-dimensional geometries, we have developed a novel hp-adaptive finite element approach for the optical Maxwell equations, using mixed meshes adapted to the multi-scale properties of the photonic structures. For electrically driven devices, we introduced novel discretization and parameter-embedding techniques to solve the drift-diffusion system for strongly degenerate semiconductors at cryogenic temperature. Our methodical advances are demonstrated on various applications, including vertical-cavity surface-emitting lasers, grating couplers and single-photon sources

    Doing Gender Im Technisch-Naturwissen-Schaftlichen Bereich

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    Für die Lösung des Nachwuchsproblems in den Technikwissenschaften spielt die Gewinnung von Frauen eine zentrale Rolle. Die in der Expertise dargestellten Befunde verdeutlichen dreierlei: (1) In den Natur- und Technikwissenschaften "verliert" man Frauen sehr früh im Lebensverlauf. (2) Wie beim Durchlauf eines Trichters (leaking pipeline) verringert sich mit jeder Bildungs- und Karrierestufe die Anzahl von Frauen in diesen Fächern und Berufen. (3) Die Erhöhung des Interesses für Technikwissenschaften von Mädchen und Frauen ist nicht nur "ein Problem" für das Bildungssystem, sondern ganz wesentlich auch des Arbeitsmarktes. Die Befunde der Expertise zeigen, dass es unbedingt notwendig ist, jungen Frauen, die in technischen Berufen gut ausgebildet sind, eine höhere Chance als bisher zu geben, (a) ihren Beruf aus dem Bereich Mathematik, Informatik, Naturwissenschaften, Technik (im Folgenden kurz: MINT) auszuüben und (b) dies auch mit den gleichen Gratifikationen wie Männer. Diese Herausforderung muss - und zwar unabhängig von der Nachfrage nach neuem Personal in technischen Berufen - schnell gemeistert werden, wenn Wirtschaft und Politik ein ernst gemeintes Interesse an "Frauen in MINT-Berufen" besitzen

    The Production of Intersubjective Certainty in the Early West German Refugee Movement

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    The following text analyses the emerging West German refugee movement of the early 1980s. The thesis is that the movement of that time successfully responded to an only recently established narrative – that refugees were a threat to the German social security system – with a strong counter-narrative. The text emphasises the role that events organised by civil society in Hamburg, Hanover, Berlin and southern Germany play in the production of certainty for this counter-narrative. Society’s approach to forced migration is understood in this text as one that is constantly being renegotiated and re-created. This paper therefore takes a cultural sociological perspective and gives specific consideration to social movements and local migration regimes. The main finding of the paper is that the establishment of the counter-narrative was successful because of the local nature of the protests. The paper is based on an empirical study of grey literature of social movements and relevant specialist literature

    Micro-concave waveguide antenna for high photon extraction from nitrogen vacancy centers in nanodiamond

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    The negatively charged nitrogen-vacancy colour center (NV(-) center) in nanodiamond is an excellent single photon source due to its stable photon generation in ambient conditions, optically addressable nuclear spin state, high quantum yield and its availability in nanometer sized crystals. In order to make practical devices using nanodiamond, highly efficient and directional emission of single photons in well-defined modes, either collimated into free space or waveguides are essential. This is a Herculean task as the photoluminescence of the NV centers is associated with two orthogonal dipoles arranged in a plane perpendicular to the NV defect symmetry axis. Here, we report on a micro-concave waveguide antenna design, which can effectively direct single photons from any emitter into either free space or into waveguides in a narrow cone angle with more than 80% collection efficiency irrespective of the dipole orientation. The device also enhances the spontaneous emission rate which further increases the number of photons available for collection. The waveguide antenna has potential applications in quantum cryptography, quantum computation, spectroscopy and metrology
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