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Color center photoluminescent nano-patterns induced in lithium fluoride by soft X-ray laser beam

机译:柔和的X射线激光束在氟化锂中诱导产生的色心光致发光纳米图案

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摘要

We present the realization and characterization of photoluminescent nanometric periodic patterns of color centers (CCs) in lithium fluoride (LiF) produced by an interferometric method based on a coherent soft X-ray laser beam. Among broad-band light-emitting materials, LiF, in the form of crystals and thin films, is a radiation-sensitive material well known in dosimetry and as a laser-active medium in optically pumped photonic devices. Primary and aggregate electronic defects can be produced in LiF by low-penetrating electromagnetic radiation, like soft X-ray. The high brightness and spatial coherence of a capillary discharge laser, with the emission wavelength of 46.9 nm, allowed writing periodic lines of stable CCs at a nanometric scale emitting visible light under optical pumping. Interferometric encoding of luminescent nano-structures in LiF proved to be a powerful tool for producing low-dimensionality optical devices for photonic applications.
机译:我们介绍了基于相干软X射线激光束的干涉法生产的氟化锂(LiF)中的色心(CC)的光致发光纳米周期性图案的实现和特征。在宽带发光材料中,晶体和薄膜形式的LiF是辐射敏感材料,在剂量学方面是众所周知的,并且是光泵浦光子器件中的激光活性介质。 LiF可以通过低穿透性电磁辐射(例如软X射线)在LiF中产生主要和总体电子缺陷。发射波长为46.9 nm的毛细管放电激光器的高亮度和空间相干性允许在光泵浦下以纳米级写入稳定CC的周期线,从而发射可见光。 LiF中发光纳米结构的干涉编码被证明是生产用于光子应用的低维光学器件的有力工具。

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