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Titlebook: Light Emitting Silicon for Microphotonics; Stefano Ossicini,Lorenzo Pavesi,Francesco Priolo Book 2003 Springer-Verlag Berlin Heidelberg 20

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Stefano Ossicini,Lorenzo Pavesi,Francesco Prioloents had reached 5.1 billion tonnes. They grew again marginally to 5.25 billion tonnes in 2019, but decreased by 1.5% to 5.17 million tonnes in 2020. The largest share—1.5 billion tonnes—was accounted for by iron ore, which gained 3.2% growth in 2020. China received 76% (from 71% in 2019), Japan 7%
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Introduction: Fundamental Aspects, integration technology. In this chapter starting from the analysis of the electronic and optical properties of silicon, compared to other semiconductors, we present the strategies that have been employed to overcome the physical inability of bulk silicon to emit light effciently.
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Electron States and Optical Properties in Confined Silicon Structures,ticated methods are necessary to elucidate the relationship between confinement and changes in the electronic and optical properties of low-dimensional Si structures. For this reason in this chapter, a review of the computational methods and results is presented.
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Porous Silicon,divided into six parts. The first introduces how porous silicon is made. The second is aimed to demonstrate that the structure of PS is a collection of nanometric objects that contribute to the light emission process. The relevant role of the surface chemistry is underlined. The third and fourth par
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Silicon Nanostructures: Wells, Wires, and Dots,nd on silicon nanoparticles and nanocrystals. In all case details of the fabrication methods and structures, electronic and optical properties, photo- and electroluminescence will be presented and discussed.
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