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Microstructure and magnetooptics of silicon oxide with implanted nickel nanoparticles

机译:植入镍纳米粒子的二氧化硅的微结构和磁光

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摘要

Metallic nickel nanoparticles of various sizes are formed in a thin near-surface layer in an amorphous SiO _2 matrix during 40-keV Ni ~+ ion implantation at a dose of (0.25-1.0) × 10 ~(17) ions/cm ~2. The microstructure of the irradiated layer and the crystal structure, morphology, and sizes of nickel particles formed at various irradiation doses are studied by transmission electron microscopy and electron diffraction. The magnetooptical Faraday effect and the magnetic circular dichroism in an ensemble of nickel nanoparticles are studied in the optical range. The permittivity ε∧ tensor components are calculated for the implanted samples using an effective medium model with allowance for the results of magnetooptical measurements. The spectral dependences of the tensor ε∧ components are found to be strongly different from those of a continuous metallic nickel film. These differences are related to a disperse structure of the magnetic nickel phase and to a surface plasma resonance in the metal nanoparticles
机译:在40-keV Ni〜+离子注入期间,以(0.25-1.0)×10〜(17)离子/ cm〜2的剂量在非晶SiO _2基质中的薄近表面层中形成各种尺寸的金属镍纳米粒子。 。通过透射电子显微镜和电子衍射研究了辐照层的微观结构以及在各种辐照剂量下形成的镍颗粒的晶体结构,形态和尺寸。在光学范围内研究了镍纳米粒子集合中的磁光法拉第效应和磁圆二色性。介电常数εfor张量分量是使用有效的介质模型计算的,用于植入的样品,并考虑了磁光测量的结果。发现张量ε1分量的光谱依赖性与连续金属镍膜的光谱依赖性非常不同。这些差异与磁性镍相的分散结构以及金属纳米粒子中的表面等离子体共振有关。

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