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Site-selective ion beam synthesis and optical properties of individual CdSe nanocrystal quantum dots in a SiO2 matrix

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arxiv 2210.07336 v2 pith:YJ4TQI7F submitted 2022-10-13 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords emissionimplantationnc-qdsquantumaperturesbeamcadmiumdots
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abstract

Cadmium selenide nanocrystal quantum dots (NC-QDs) are site-selectively synthesized by sequential ion beam implantation of selenium and cadmium ions in a SiO2 matrix through sub-micron apertures followed by a rapid thermal annealing step. The size, areal density and optical emission energy of the NC-QDs are controlled by the ion fluence during implantation and the diameter of implantation aperture. For low fluences and small apertures the emission of these optically active emitters is blue-shifted compared to that of the bulk material by $>100\,{\rm meV}$ due to quantum confinement. The emission exhibits spectral diffusion and blinking on a second timescales as established also for solution synthesized NC-QDs.

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Cited by 1 Pith paper

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  1. Analysis of Threat-Based Manipulation in Large Language Models: A Dual Perspective on Vulnerabilities and Performance Enhancement Opportunities

    cs.CR 2025-07 reject novelty 5.0 of 10

    Threat-based prompts change LLM output length, style, and certainty, but the claimed performance gains are not backed by accuracy measures.

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