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Laser-induced thermo-lens in ion-implanted optically-transparent polymer

机译:离子注入光学透明聚合物中的激光诱导热透镜

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A strong laser-induced thermo-lens (LITL) effect is found in optically-transparent ion-implanted polymer upon irradiation by a cw laser with a power up to 100 mW (λ = 532 nm). The effect is observed in bulk polymethylmethacrylate (PMMA) implanted with silicon ions (Si~+). A series of PMMA specimens is examined, subjected to low-energy (50 keV) Si~+ implantation at various dosages in the range from 1014 to 1017 ions/cm2. The thermo-lensing is unambiguously attributed to the modification of the subsurface region of the polymer upon the ion implantation. Having a gradient refractive-index in-depth profile, the subsurface organic-carbonaceous layer produced in the polymer by ion implantation, is responsible for the LITL effect observed in reflection geometry. The LITL occurs due to optical absorption of the ion-implanted layer of a thickness of about 100 nm buried in a depth ~100 nm, and subsequent laser-induced change in the refractive index of the Si~+-implanted PMMA. Being of importance as considering photonic applications of ion-implanted optically-transparent polymers, the LITL effect in Si~+-implanted PMMA is studied as a function of the implant dose, the incident laser power and incidence angle, and is linked to the structure formed in this ion-implanted plastic.
机译:在以高达100 mW(λ= 532 nm)的功率的连续激光照射下,在光学透明的离子注入聚合物中发现了强烈的激光诱导热透镜(LITL)效应。在注入了硅离子(Si〜+)的本体聚甲基丙烯酸甲酯(PMMA)中观察到了这种效果。检查了一系列PMMA样品,以1014至1017离子/ cm2范围内的各种剂量进行了低能量(50 keV)的Si〜+注入。热透镜明确地归因于离子注入后聚合物表面区域的改性。具有梯度折射率深度分布,通过离子注入在聚合物中产生的地下有机碳层负责反射几何结构中观察到的LITL效应。发生LITL的原因是,埋在〜100 nm深度处的约100 nm厚度的离子注入层发生了光吸收,并且随后激光诱导了Si〜+注入的PMMA的折射率变化。考虑到离子注入的光学透明聚合物在光子应用方面的重要性,研究了Si〜+注入的PMMA中的LITL效应与注入剂量,入射激光功率和入射角的关系,并与结构有关在这种离子注入塑料中形成。

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