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Luminescent Erbium-Doped Silicon Thin Films for Advanced Anti-Counterfeit Labels

机译:用于先进防伪标签的发光erbium掺杂的硅薄膜

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摘要

The never-ending struggle against counterfeit demands the constant development of security labels and their fabrication methods. This study demonstrates a novel type of security label based on downconversion photoluminescence from erbium-doped silicon. For fabrication of these labels, a femtosecond laser is applied to selectively irradiate a double-layered Er/Si thin film, which is accomplished by Er incorporation into a silicon matrix and silicon-layer crystallization. The study of laser-induced heating demonstrates that it creates optically active erbium centers in silicon, providing stable and enhanced photoluminescence at 1530 nm. Such a technique is utilized to create two types of anti-counterfeiting labels. The first type is realized by the single-step direct laser writing of luminescent areas and detected by optical microscopy as holes in the film forming the desired image. The second type, with a higher degree of security, is realized by adding other fabrication steps, including the chemical etching of the Er layer and laser writing of additional non-luminescent holes over an initially recorded image. During laser excitation at 525 nm of luminescent holes of the labels, a photoluminescent picture repeating desired data can be seen. The proposed labels are easily scalable and perspective for labeling of goods, securities, and luxury items.
机译:对抗伪造的永无止境的斗争要求安全标签的不断发展及其制造方法。该研究表明了一种基于来自铒掺杂硅的下变化光致发光的新型安全标签。为了制造这些标签,施加飞秒激光器以选择性地照射双层ER / Si薄膜,其通过将ER掺入硅基矩阵和硅层结晶而完成。激光诱导的加热研究表明它在硅中产生光学活性铒中心,在1530nm处提供稳定和增强的光致发光。这种技术用于创建两种类型的防伪标签。通过发光区域的单步直接激光写入并通过光学显微镜作为形成所需图像的孔来检测第一类型。通过添加其他制造步骤来实现具有更高的安全程度的第二种类型,包括在最初记录的图像上的ER层的化学蚀刻和另外的非发光孔的激光写入。在标签的525nm发光孔的激光激发期间,可以看到重复期望数据的光致发光图像。拟议的标签很容易可扩展和透视,用于标记商品,证券和奢侈品。

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