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Pulsewidth dependence of laser-induced periodic surface structure formed on yttria-stabilized zirconia polycrystal

机译:在氧化钇稳定的氧化锆多晶上形成的激光诱导的周期性表面结构的脉冲宽度依赖性

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Three-mol% yttria-stabilized tetragonal zirconia polycrystal (3Y-TZP) is a fine engineering ceramic that offers high fracture resistance and flexural strength. Thus, it is often applied in mechanical components and medical implants. The surface roughness can be controlled to improve the device characters in some applications. Ultrashort pulse lasers can form laser-induced periodic surface structures (LIPSS) on 3Y-TZP, which have never been investigated in detail. Therefore, this paper reports the formation and characteristics of LIPSS formed on 3Y-TZP, focusing on the pulsewidth dependence. The LIPSS was formed by a Ti:sapphire chirped-pulse amplification system, which generates 810 nmcentered 80-fs pulses at a 570 Hz repetition rate. The measured ablation threshold peak fluence was ~1.5 J/cm~2 and the LIPSS was formed at the peak fluence of 2.7–7.7 J/cm~2. For linearly polarized pulses, the lines of the LIPSS were oriented parallel to the polarization direction, and their period was comparable to or larger than the center wavelength of the laser. These characteristics differ from the reported characteristics of LIPSS on metals and dielectrics. The pulsewidth dependence of the ablation and LIPSS was investigated for different pulsewidths and signs of chirp. Under the investigated fluence condition, the LIPSS period increased with increasing pulsewidth for both signs of chirp. Similar pulsewidth dependencies were observed for circularly polarized pulses.
机译:三摩尔%yTTRIA稳定的四方氧化锆多晶(3Y-TZP)是一种精细工程陶瓷,可提供高裂缝性和抗弯强度。因此,它通常适用于机械部件和医疗植入物。可以控制表面粗糙度以改善某些应用中的设备字符。超短脉冲激光器可以在3Y-TZP上形成激光诱导的周期性表面结构(嘴唇),从未详细研究过的3Y-TZP。因此,本文报告了在3Y-TZP上形成的嘴唇的形成和特征,重点是脉冲宽度依赖性。嘴唇由Ti:Sapphire啁啾脉冲放大系统形成,其以570Hz重复率产生810个NmcleaRed 80-FS脉冲。测量的消融阈值峰值注入〜1.5J / cm〜2,在峰值流量为2.7-7.7J / cm〜2的峰值下形成唇缘。对于线性偏振脉冲,嘴唇的线平行于偏振方向定向,并且它们的时期与激光器的中心波长相当或大。这些特性与金属和电介质的嘴唇的特征不同。针对啁啾的不同脉冲和迹象研究了消融和嘴唇的脉冲宽度依赖性。在调查的注重条件下,随着啁啾迹象的增加,嘴唇期间随着脉冲宽度的增加而增加。对于圆偏振脉冲,观察到类似的脉冲宽度依赖性。

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