论文标题

调整飞秒激光诱导的钢的表面结构的周期:从倾斜的入射到鹅毛

Tuning the period of femtosecond laser induced surface structures in steel: from angled incidence to quill writing

论文作者

Fuentes-Edfuf, Yasser, Sánchez-Gil, José A., Pardo, Marina Garcia, Serna, Rosalía, Tsibidis, George D., Giannini, Vincenzo, Solis, Javier, Siegel, Jan

论文摘要

在某些条件下,金属表面暴露于多个超短激光脉冲会导致形成明确定义的周期性表面结构。我们展示了如何通过控制材料中触发的复杂相互作用机制在较大范围内调节钢中的这种结构周期。在影响诱导结构特性的不同辐照参数中,激光束的入射角占据着重要作用。我们介绍了钢辐照后的该角度依赖性的实验和理论研究,同时以120 FS持续时间和800 nm波长的激光脉冲,同时以恒定速度移动样品。我们的发现可以分为两个块。首先,我们观察到钢表面两个不同的连锁周期的空间共存,均以逆缩放在角度上增加,这与表面等离子体偏振子的前向和向后传播有关。为了了解潜在的物理现象,我们扩展了一个最近开发的模型,该模型考虑到表面粗糙度的定量特性到吸收金属的情况(介电函数的大型假想部分),并与实验观察到的角度依赖性获得了极好的匹配。作为第二个重要发现,我们观察到Quill写作效果,也称为非重新性写作,以逆转样本运动方向的形式发生了重大变化。到目前为止,这种非凡的现象仅在介电材料内才观察到,我们的工作也强调了它在激光表面处理中的重要性。我们将对称分解的起源归因于静态多重脉冲辐照时诱导的非对称微观和纳米级粗糙度,从而导致耦合表面等离子体极化的波形的非对称修饰。

Exposure of metal surfaces to multiple ultrashort laser pulses under certain conditions leads to the formation of well-defined periodic surface structures. We show how the period of such structures in steel can be tuned over a wide range by controlling the complex interaction mechanisms triggered in the material. Amongst the different irradiation parameters that influence the properties of the induced structures, the angle of incidence of the laser beam occupies a prominent role. We present an experimental and theoretical investigation of this angle dependence in steel upon irradiation with laser pulses of 120 fs duration and 800 nm wavelength, while moving the sample at constant speed. Our findings can be grouped into two blocks. First, we observe the spatial coexistence of two different ripple periods at the steel surface, both featuring inverse scaling upon angle increase, which are related to forward and backward propagation of surface plasmon polaritons. To understand the underlying physical phenomena, we extend a recently developed model that takes into account quantitative properties of the surface roughness to the case of absorbing metals (large imaginary part of the dielectric function), and obtain an excellent match with the experimentally observed angle dependence. As second important finding, we observe a quill writing effect, also termed non-reciprocal writing, in form of a significant change of the ripple period upon reversing the sample movement direction. This remarkable phenomenon has been observed so far only inside dielectric materials and our work underlines its importance also in laser surface processing. We attribute the origin of symmetry breaking to the non-symmetric micro- and nanoscale roughness induced upon static multiple pulse irradiation, leading to non-symmetric modification of the wavevector of the coupled surface plasmon polariton.

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