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Refractive index change in photoluminescent patterns based on color centers generated in lithium fluoride by EUV radiation

机译:基于EUV辐射的锂氟化物产生的颜色中心的光致发光图案的折射率变化

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Periodic luminescent patterns based on active color centers have been efficiently created in Lithium Fluoride (LiF) crystals and films by Extreme Ultra-Violet (EUV) light and soft x-rays from a laser-plasma source by masking the incoming radiation. Strong visible photoluminescence at room temperature has been measured from colored geometric microstructures, produced with high spatial resolution on large areas in short exposure times. Accurate spectrophotometric measurements allow estimating a significant increase in the real part of the refractive index, locally induced by the formation of high concentrations of stable primary and aggregate electronic defects at the surface of the LiF irradiated crystal, in a very thin layer, whose depth has been evaluated around 50 nm. On the basis of a semi-classical dipole-electromagnetic field interaction model, the contribution of different kinds of point defects to the overall refractive index change has been quantified. Promising opportunities in the fabrication of passive and active devices for integrated optics, such as gratings and distributed lasers, are offered by the use of this kind of radiation.
机译:通过掩蔽进入的辐射,通过极端超紫(EUV)光和来自激光等离子体源的极端紫外线(EUV)光和软X射线在氟化锂(LiF)晶体和薄膜中有效地创建了基于活性色中心的周期性发光图案。在室温下的强烈可见光致发光已从彩色的几何微结构中测量,在短时间内具有高空间分辨率的高空间分辨率。精确的分光光度测量允许估计折射率的实际部分的显着增加,通过在Lif辐照晶体的表面的高浓度稳定的初级和聚集电子缺陷中形成局部诱导,在一个非常薄的层中,其深度具有被评估约50 nm。在半古典偶极电磁场相互作用模型的基础上,已经量化了不同类型点缺陷对整体折射率变化的贡献。通过使用这种辐射提供了用于集成光学器件的被动和有源器件的有希望的机会,例如光栅和分布式激光器。

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