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Evidence of chemical reactions in the hydroxyapatite laser ablation plume with a water atmosphere

机译:水气氛下羟基磷灰石激光烧蚀羽流中化学反应的证据

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摘要

The expansion dynamics of the ablation plume generated by KrF laser irradiation of hydroxyapatite targets in a 0.1 mbar water atmosphere has been studied by fast intensified charge coupled device imaging with the aid of optical bandpass filters. The aim of the filters is to isolate the emission of a single species, which allows separate analysis of its expansion. Images obtained without a filter revealed two emissive components in the plume, which expand at different velocities for delay times of up to 1.1 ¿s. The dynamics of the first component is similar to that of a spherical shock wave, whereas the second component, smaller than the first, expands at constant velocity. Images obtained through a 520 nm filter show that the luminous intensity distribution and evolution of emissive atomic calcium is almost identical to those of the first component of the total emission and that there is no contribution from this species to the emission from the second component of the plume. The analysis through a 780 nm filter reveals that atomic oxygen partially diffuses into the water atmosphere and that there is a contribution from this species to the emission from the second component. The last species studied here, calcium oxide, was analyzed by means of a 600 nm filter. The images revealed an intensity pattern more complex than those from the atomic species. Calcium oxide also contributes to the emission from the second component. Finally, all the experiments were repeated in a Ne atmosphere. Comparison of the images revealed chemical reactions between the first component of the plume and the water atmosphere.
机译:通过在光学带通滤波器的帮助下,通过快速增强的电荷耦合器件成像,研究了在0.1 mbar水环境中KrF激光辐照羟基磷灰石靶材产生的消融羽流的膨胀动力学。过滤器的目的是隔离单个物种的排放,从而可以对其扩展进行单独分析。在没有过滤器的情况下获得的图像显示出羽流中的两个发射分量,这些发射分量以不同的速度扩展,延迟时间高达1.1 s。第一个分量的动力学类似于球形冲击波,而小于第一个分量的第二个以恒定速度扩展。通过520 nm滤光片获得的图像表明,发光原子钙的发光强度分布和演化与总发射的第一组分的发光强度分布和演化几乎相同,并且该物种对第二组分的发射没有贡献。羽。通过780 nm滤光片进行的分析表明,原子氧部分扩散到水大气中,并且该物种对第二组分的发射有贡献。此处研究的最后一种物质,氧化钙,通过600 nm滤光片进行了分析。图像显示出比来自原子物种的强度图案更复杂的强度图案。氧化钙也有助于第二组分的发射。最后,在Ne气氛中重复所有实验。图像比较表明,羽流的第一部分与水大气之间发生化学反应。

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