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Optical detection of a single rare-earth ion in a crystal

机译:光学检测晶体中的单个稀土离子

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摘要

Rare-earth-doped laser materials show strong prospects for quantum information storage and processing, as well as for biological imaging, due to their high-Q 4f↔4f optical transitions. However, the inability to optically detect single rare-earth dopants has prevented these materials from reaching their full potential. Here we detect a single photostable Pr3+ ion in yttrium aluminium garnet nanocrystals with high contrast photon antibunching by using optical upconversion of the excited state population of the 4f↔4f optical transition into ultraviolet fluorescence. We also demonstrate on-demand creation of Pr3+ ions in a bulk yttrium aluminium garnet crystal by patterned ion implantation. Finally, we show generation of local nanophotonic structures and cell death due to photochemical effects caused by upconverted ultraviolet fluorescence of praseodymium-doped yttrium aluminium garnet in the surrounding environment. Our study demonstrates versatile use of rare-earth atomic-size ultraviolet emitters for nanoengineering and biotechnological applications.
机译:稀土掺杂激光材料由于其高Q4f↔4f光学跃迁而在量子信息存储和处理以及生物成像方面显示出广阔的前景。但是,无法光学检测单个稀土掺杂剂已阻止了这些材料发挥其全部潜力。在这里,我们通过将4f↔4f光学跃迁的激发态种群光学上转换为紫外荧光,在具有高对比度光子反聚束的钇铝石榴石纳米晶体中检测到单个光稳定的Pr 3 + 离子。我们还证明了通过图案化离子注入按需在大量钇铝石榴石晶体中按需生成Pr 3 + 离子。最后,我们显示了由于周围环境中掺ody钇铝石榴石的紫外荧光上转换引起的光化学效应,导致了局部纳米光子结构的产生和细胞死亡。我们的研究表明,稀土原子级紫外线发射器在纳米工程和生物技术应用中得到了广泛使用。

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