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Threshold measurement of two-photon laser induced photo-polymerization via Z-scan

机译:通过Z扫描测量双光子激光诱导光聚合的阈值

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A technique is suggested to measure a threshold of two-photon initiated photopolymerisation involving Z-scan of a thin film of sensitive material along the focusing axis of the laser beam. The condition of reaching the threshold when gradually increasing the light intensity by moving the film towards the focal spot of the beam is defined as that with minimal intensity at which polymerization occurs. The occurrence of the polymerization is detected by interferometric effect inside the transmitted beam itself, which is due to interference of the wave going through the polymerization area and the wave going around it. The technique is demonstrated for measurements employing Nd:YAG laser in nanosecond regime with fundamental frequency 1064 nm and its harmonic of 532 nm, as well as with pumped by its third harmonic optical parametric oscillator. Threshold data are presented for particular systems, indicating threshold of 5 GW/cm2 for a system based on Rose Bengal exposed by 1064 nm nanosecond-pulsed radiation and 0.05 GW/cm2 for Darocur initiators exposed to 532 nm.
机译:建议一种技术来测量双光子引发的光聚合的阈值,该阈值涉及沿着激光束的聚焦轴对敏感材料的薄膜进行Z扫描。当通过使膜朝向光束的焦点移动而逐渐增加光强度时达到阈值的条件被定义为发生聚合的强度最小的条件。通过透射光束本身内部的干涉效应来检测聚合的发生,这是由于穿过聚合区域的波和围绕聚合区域的波的干涉。演示了使用Nd:YAG激光在纳秒范围内进行测量的技术,其基频为1064 nm,谐波为532 nm,并由其三次谐波光学参量振荡器泵浦。提供了特定系统的阈值数据,对于基于1064 nm纳秒脉冲辐射暴露的Rose Bengal的系统,阈值为5 GW / cm2;对于暴露于532 nm的Darocur引发剂,阈值为0.05 GW / cm2。

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