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Improving the ablation efficiency of excimer laser systems with higher repetition rates through enhanced debris removal and optimized spot pattern

机译:通过增强的碎屑清除和优化的光斑图案,以更高的重复率提高准分子激光系统的烧蚀效率

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Purpose To evaluate the reasons for the required increased radiant exposure for higher-repetition-rate excimer lasers and determine experimentally possible compensations to achieve equivalent ablation profiles maintaining the same single-pulse energies and radiant exposures for laser repetition rates ranging from 430 to 1000 Hz. Setting Schwind eye-tech-solutions GmbH and Co. KG, Kleinostheim, Germany. Design Experimental study. Methods Poly(methyl methacrylate) (PMMA) plates were photoablated. The pulse laser energy was maintained during all experiments; the effects of the flow of the debris removal, the shot pattern for the correction, and precooling the PMMA plates were evaluated in terms of achieved ablation versus repetition rate. Results The mean ablation performance ranged from 88% to 100%; the variability between the profile measurements ranged from 1.4% to 6.2%. Increasing the laser repetition rate from 430 Hz to 1000 Hz reduced the mean ablation performance from 98% to 91% and worsened the variability from 1.9% to 4.3%. Increasing the flow of the debris removal, precooling the PMMA plates to -18 C, and adapting the shot pattern for the thermal response of PMMA to excimer ablation helped stabilize the variability. Only adapting the shot pattern for the thermal response of PMMA to excimer ablation helped stabilize the mean ablation performance. Conclusions The ablation performance of higher-repetition-rate excimer lasers on PMMA improved with improvements in the debris removal systems and shot pattern. More powerful debris removal systems and smart shot patterns in terms of thermal response improved the performance of these excimer lasers. Financial Disclosure Both authors are employees of Schwind eye-tech-solutions GmbH and Co. KG.
机译:目的评估较高重复频率的受激准分子激光器所需辐射暴露增加的原因,并确定实验可能的补偿,以实现等效的烧蚀曲线,以保持相同的单脉冲能量和430到1000 Hz激光重复率的辐射暴露。设在德国Kleinostheim的Schwind eye-tech-solutions GmbH and Co. KG。设计实验研究。方法对聚甲基丙烯酸甲酯(PMMA)板进行光烧蚀。在所有实验中均保持脉冲激光能量。根据获得的烧蚀与重复率,评估了清除碎屑流,矫正的喷射方式和预冷PMMA板的效果。结果平均消融性能为88%至100%;轮廓测量之间的差异范围为1.4%至6.2%。激光重复频率从430 Hz增加到1000 Hz,平均烧蚀性能从98%降低到91%,变异性从1.9%降低到4.3%。增加清除碎屑的流量,将PMMA板预冷至-18 C,并使喷丸图案适应PMMA对准分子消融的热响应,有助于稳定可变性。仅使发射图案适应PMMA对准分子消融的热响应才能帮助稳定平均消融性能。结论高重复率准分子激光在PMMA上的烧蚀性能随着碎片清除系统和压射图案的改进而提高。就热响应而言,功能更强大的碎屑清除系统和智能发射图案可改善这些准分子激光器的性能。财务披露两位作者均为Schwind eye-tech-solutions GmbH和Co. KG的员工。

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