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KrF laser ablation of polyurethane

机译:KRF激光烧蚀聚氨酯

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摘要

248 nm excimer laser ablation of a polyurethane polymer is shown to proceed efficiently and with a surprising lack of post- ablation surface debris. The absorption spectrum of this material displays a strong increase in absorbance beginning at 260 nm and extending to shorter wavelengths, whereas a relatively weak absorption for longer wavelengths accounts for the inability of 308 nm excimer radiation to cause efficient ablation. Ablation rate versus incident fluence data were obtained by both conventional stylus profilometry and the higher precision quartz- crystal microbalance (QCM) method. The data from both methods were in agreement, although the QCM technique provided far more detail of the threshold region. Interestingly, near 35 mJ/cm$+2$/ incident fluence, a pronounced increase in the slope of the rate versus fluence curve appears. This is suggestive of a mechanistic change from a lower to higher efficiency ablation regime. Applying a conventional Beer's Law analysis of rate versus In(fluence) yields a straight line that agrees well with the data up to 300 mJ/cm$+2$/. In face, the absorption coefficient derived from the slope of this curve is within 4% of the experimentally determined low-level value.
机译:248 nm促进剂激光烧蚀聚氨酯聚合物的激光烧蚀烧蚀效果有效,并且令人惊讶地缺乏烧蚀后表面碎片。该材料的吸收光谱显示在260nm开始的吸光度强并延伸到较短的波长,而较长波长的吸收相对较弱地占据308nm的准分子辐射以引起有效消融的能力。通过传统的触针轮廓测量和更高的精密石英晶体微稳定(QCM)方法,获得消融率与事件流量数据。两种方法的数据都在一致,尽管QCM技术提供了更详细的阈值区域。有趣的是,接近35 MJ / cm $ + 2 $ /事件的流量,出现了速率与流量曲线的坡度的明显增加。这暗示了从较低到更高效率的消融制度的机械变化。应用常规啤酒法律分析的速率与(FLUEENCE)产生一条直线,这与高达300 MJ / cm $ + 2 $ /的数据良好。在面部,从该曲线的斜率衍生的吸收系数在实验确定的低级值的4%范围内。

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