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Optical Spectra of Gamma-Irradiated LiF Crystals with Anisotropic Lithium Nanoparticles

机译:具有各向异性锂纳米粒子的γ辐射的生命晶体的光谱

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摘要

The optical response of Li anisotropic defects and nanoparticles from three faces of cubic LiF crystals with 10-mm edges to γ radiation from a_(60)Со source with doses of 10_(5)–10_(9)R at 320 K in air is studied. After a maximum dose of 10_(9)R, scanning electron microscopy revealed submicron metal lithium flakes ordered into long parallel nanofilaments. The resonance absorption band, which shifts from 272 to 295 nm with increasing dose, is assigned to lithium nanocolloids in the (110) plane. The band at 202–225 nm observed only from the (100) face narrows at doses below 10_(5)R and is assigned to diatomic fluorine molecules in interstitial sites. The appearance of the 209–212–215-nm triplets at 2.7 × 10_(5)R from the (100) plane and the 211–213–215-nm triplets at 0.9 × 10_(5)R from the (010) plane is related to radiation-induced axially symmetric bipolarons with a high oscillator strength. The splitting of the 445-nm band into a 438–445–450-nm triplet is observed only for the (010) plane after a dose of 10_(6)R and is related to surface plasmon polaritons (longitudinal and transverse) of elongated Li nanoparticles. The ( F ~(2)– F ~(3)) complexes are oriented in the most imperfect (111) plane and are seen along three cubic axes.
机译:Li各向异性缺陷和纳米颗粒的三个立方体晶体的纳米颗粒与来自A_(60)С®源的10mm边缘的三个面为γ辐射,在空气中为320k的剂量为10_(5)-10_(9)R.研究过。在10_(9)R的最大剂量后,扫描电子显微镜显示亚微米金属锂薄片排序成长平行的纳米丝。随着剂量增加272至295nm的共振吸收带被分配给(110)平面中的锂纳米胶质。仅从10_(5)r以下的剂量仅观察到202-225nm的带,并且被分配到间质部位中的硅藻氟分子。从(100)平面的2.7×10_(5)r的209-212-215-nm三元组的外观和211-213-215-nm三元组从(010)平面为0.9×10_(5)r与具有高振荡器强度的辐射诱导的轴对称双极诱导有关。在10_(6)r剂量之后仅针对(010)平面观察445-nm波段分离为438-445-450-nm三重态,并且与细长的表面等离子体极化子(纵向和横向)有关。李纳米粒子。 (f〜(2) - f〜(3))复合物在最不完全(111)平面中,并且沿三个立方轴看。

著录项

  • 来源
    《Optics and Spectroscopy》 |2018年第5期|共5页
  • 作者单位

    Institute of Nuclear Physics Academy of Sciences of Uzbekistan;

    Institute of Nuclear Physics Academy of Sciences of Uzbekistan;

    Institute of Nuclear Physics Academy of Sciences of Uzbekistan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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