离子注入光学透明聚合物中的激光诱导热透镜

I. Stefanov, V. G. Ivanov, G. Hadjichristov
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引用次数: 3

摘要

在功率高达100 mW (λ = 532 nm)的连续波激光照射下,发现了光学透明离子注入聚合物的强激光诱导热透镜效应。在注入硅离子(Si+)的块状聚甲基丙烯酸甲酯(PMMA)中观察到这种效应。对一系列PMMA样品进行了低能(50 keV) Si+注入,注入剂量从1014到1017个离子/cm2不等。热透镜的产生是由于离子注入后聚合物的亚表面区域发生了修饰。离子注入在聚合物中产生的地下有机碳层具有梯度折射率纵深剖面,是反射几何中观察到的LITL效应的原因。LITL的发生是由于埋在~ 100 nm深度的厚度约100 nm的离子注入层的光学吸收,以及随后激光引起的Si+注入PMMA折射率的变化。考虑到离子注入的光学透明聚合物的光子应用,研究了Si+注入PMMA中的LITL效应作为注入剂量、入射激光功率和入射角的函数,并与离子注入塑料中形成的结构有关。
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Laser-induced thermo-lens in ion-implanted optically-transparent polymer
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.
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