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Grain boundary effects on the optical constants and Drude relaxation times of silver films

机译:晶界对银膜光学常数和德鲁德弛豫时间的影响

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摘要

Silver demonstrates the unique optical properties that make it suitable for various plasmonic applications. Determining the accurate optical constants for silver and investigating its dependence on grain structures are necessary for reliable theoretical predictions. This work investigates the effects of different deposition conditions and the resultant variable grain sizes, upon the optical properties of the silver films in conjunction with ellipsometry and optical characterization. Annealing conditions of substrate SiN_x films were also studied to ensure good quality of deposited polycrystalline silver films. The effects of grain sizes of silver on its electronic relaxation times were studied and shown to be consistent with the theoretical electrical resistivity model. This study shows that voids and surface layers can affect the optical constant values and that reproducible results can be obtained by avoiding such artefacts. The results will have implications on the analysis of different silver based nanostructures like nanowires and nanorods where grain boundary scattering can affect the optical and electrical properties like reflection and resistivity.
机译:银具有独特的光学性能,使其适合各种等离子体应用。确定银的准确光学常数并研究其对晶粒结构的依赖性对于可靠的理论预测是必要的。这项工作结合椭圆偏光法和光学特性,研究了不同沉积条件和所产生的可变晶粒尺寸对银膜光学性能的影响。还研究了衬底SiN_x膜的退火条件,以确保沉积的多晶银膜的良好质量。研究了银的粒度对其电子弛豫时间的影响,并证明与理论电阻率模型相符。这项研究表明,空隙和表面层会影响光学常数值,并且可以通过避免此类伪像来获得可重复的结果。结果将对不同银基纳米结构(如纳米线和纳米棒)的分析产生影响,其中晶界散射会影响光学和电学性质,如反射和电阻率。

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  • 来源
    《Journal of Applied Physics 》 |2016年第23期| 233109.1-233109.12| 共12页
  • 作者单位

    Australian Centre for Advanced Photovoltaics, School of Photovoltaic and Renewable Energy Engineering, University of New South Wales, Sydney 2052, Australia;

    Australian Centre for Advanced Photovoltaics, School of Photovoltaic and Renewable Energy Engineering, University of New South Wales, Sydney 2052, Australia;

    Australian Centre for Advanced Photovoltaics, School of Photovoltaic and Renewable Energy Engineering, University of New South Wales, Sydney 2052, Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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