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用径向偏振飞秒光束辐照镍时产生的波纹形成。

Ripple formation on nickel irradiated with radially polarized femtosecond beams.

作者信息

Tsibidis George D, Skoulas Evangelos, Stratakis Emmanuel

出版信息

Opt Lett. 2015 Nov 15;40(22):5172-5. doi: 10.1364/OL.40.005172.

Abstract

We report on the morphological effects induced by the inhomogeneous absorption of radially polarized femtosecond laser irradiation of nickel (Ni) in sub-ablation conditions. A theoretical prediction of the morphology profile is performed, and the role of surface plasmon excitation in the production of self-formed periodic ripple structures is evaluated. Results indicate a smaller periodicity of the ripples profile compared to that attained under linearly polarized irradiation conditions. A combined hydrodynamical and thermoelastic model is presented in laser beam conditions that lead to material melting. The simulation results are presented to be in good agreement with the experimental findings. The ability to control the size of the morphological changes via modulating the beam polarization may provide an additional route for controlling and optimizing the outcome of laser micro-processing.

摘要

我们报道了在亚烧蚀条件下,镍(Ni)对径向偏振飞秒激光非均匀吸收所诱导的形态学效应。对形态轮廓进行了理论预测,并评估了表面等离子体激元激发在自形成周期性波纹结构产生中的作用。结果表明,与线偏振辐照条件下相比,波纹轮廓的周期性更小。在导致材料熔化的激光束条件下,提出了一个流体动力学和热弹性相结合的模型。模拟结果与实验结果吻合良好。通过调制光束偏振来控制形态变化大小的能力,可能为控制和优化激光微加工结果提供一条额外途径。

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