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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Photoluminescence of magnesium-associated color centers in LiF crystals implanted with magnesium ions
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Photoluminescence of magnesium-associated color centers in LiF crystals implanted with magnesium ions

机译:在植入镁离子的生命晶体中镁相关颜色中心的光致发光

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摘要

In the present paper, the effect of magnesium nanoparticles implanted in a LiF crystal on the optical properties of color centers is studied. The transmittance spectra and AFM images demonstrate effective formation,of the color centers and magnesium nanoparticles in an implanted layer of similar to 60-100 nm in thickness. Under thermal annealing, a periodical structure is formed on the surface of the crystal and in the implanted layer due to self-organization of the magnesium nanoparticles. Upon excitation by argon laser with a wavelength of 488 nm at 5 K, in a LiF crystal, implanted with magnesium ions as well as in heavily gamma-irradiated LiF: Mg crystals, luminescence of the color centers at lambda(max) =640 nm with a zero-phonon line at 601.5 nm is observed. The interaction of magnesium nanoparticles and luminescing color centers in a layer implanted with magnesium ions has been revealed. It is shown that the luminescence intensity of the implanted layer at a wavelength of 640 nm is by more than two thousand times higher than that of a heavily gamma-irradiated LiF: Mg crystal. The broadening of the zero-phonon line at 601.5 nm in the spectrum of the implanted layer indicates the interaction of the emitting quantum system with local field of the surface plasmons of magnesium nanoparticles. The focus of this work is to further optimize the processing parameters in a way to result in luminescence great enhancement of color centers by magnesium nanoparticles in LiF. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本文中,研究了植入LIF晶体中的镁纳米粒子对颜色中心的光学性质的影响。透射谱和AFM图像在植入层中展示有效的形成,其厚度为60-100nm的植入层中。在热退火下,由于镁纳米粒子的自组织,在晶体的表面和植入层的表面上形成周期性结构。在激发激发时,在5 k的波长为488nm的氩气,在LiF晶体中,植入镁离子以及重物辐照的LiF:Mg晶体,在Lambda(Max)= 640nm的颜色中心的发光观察到在601.5nm处的零位线。已经揭示了镁纳米粒子和发光颜色中心的相互作用已经揭示了植入镁离子的层中。结果表明,在640nm波长的植入层的发光强度比大于γ辐射的LiF:mg晶体高度高度高出两千次。在植入层的光谱中,在601.5nm处在601.5nm处的宽度扩展表示发射量子系统与镁纳米粒子的表面等离子体的局部场的相互作用。本作作品的重点是进一步优化在LIF中的镁纳米粒子的发光的发光巨大增强颜色中心的方法。 (c)2018 Elsevier B.v.保留所有权利。

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