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Tuning optical properties of atomically heterogeneous systems created by plasma-based low-energy ion beams

机译:由基于等离子体的低能量离子束产生的原子异质系统的调谐光学性质

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摘要

The optical properties (reflectivity, transmissivity, and absorptivity) of metallic thin films (MTFs) of copper, silver, gold, and aluminum upon irradiation by low-energy (similar to 0.5 keV) inert gaseous argon (Ar+) ion beams are investigated using UV-VIS-NIR spectrophotometry. The optical constants (real and imaginary parts of the refractive index) of both pristine as well as irradiated MTFs are measured by employing the pseudo-Brewster angle technique. The implanted low-energy Ar+ ions modify the dielectric constant of pure MTFs, which in turn changes the refractive index and therefore alters the optical properties of MTFs. Results indicate that the reflectivity decreases, whereas the transmissivity increases with Ar+ ion fluence. Absorptivity, calculated using the energy conservation law, increases with ion fluence. The optical modification of MTFs is discussed in light of Maxwell-Garnett theory, and possible applications are outlined. (C) 2020 Optical Society of America
机译:研究了通过低能量(类似于0.5keV)惰性气态氩(AR +)离子束照射时铜,银,金和铝的金属薄膜(MTF)的光学性质(反射率,透射率和吸收率) UV-Vis-nir分光光度法。 通过采用伪布鲁斯角角技术来测量原始以及照射MTF的光学常数(折射率的真实和虚部)。 植入的低能量Ar +离子改变纯MTF的介电常数,这又改变折射率,因此改变了MTF的光学性质。 结果表明反射率降低,而透射率随Ar +离子注量而增加。 利用节能法计算的吸收率随着离子注量而增加。 根据Maxwell-Garnett理论讨论了MTF的光学修改,概述了可能的应用。 (c)2020美国光学学会

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    《Applied optics》 |2020年第14期|共10页
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