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Non-linear Optical Hazards from Near-Infrared Ultrafast Laser Pulses in Ocular Tissue: Paper #301

机译:近红外超速激光脉冲在眼部组织中的非线性光学危险:纸张#301

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Ultrafast lasers are capable of generating extremely high peak powers and inducing non-linear optical phenomena that may be hazardous to sensitive ocular tissue. The generation of broadband supercontinuum light from ultrafast near infrared (NIR) lasers is of particular interest because of the potential damaging effects on both the cornea and retina. Freshly excised porcine eyes and an artificial model eye proved to be suitable systems to investigate non-linear optical phenomena due to the similarity in size and optical properties to the human eye. A tunable optical parametric amplifier (OPA) with a nominal pulse with of 100 femtoseconds generated all laser exposures in the 1200-1500 nm range. A fiber-based spectrometer introduced into the back of excised porcine eyes through a small incision in the sclera and placed at the retinal plane measured spectral broadening of the NIR femtosecond laser pulses. Changes in the spectral profile of the supercontinuum light were observed at multiple pulse energies and monitored dynamically as the position of the beam focus was adjusted with respect to the corneal surface. Further consideration of non-linear optical hazards may be required to ensure the safe use of ultrafast lasers as they become more prevalent in life sciences, telecommunications, industrial processing, and biomedical applications.
机译:超快激光能够产生极高的峰值功率,并诱导可能对敏感眼组织有害的非线性光学现象。由于对角膜和视网膜的潜在损害效应,来自Ultrafast近红外(NIR)激光器的宽带超连续灯的产生特别感兴趣。由于尺寸和光学性质的相似性,新鲜切除的猪眼和人工模型的眼睛被证明是适当的系统,以研究由于人眼的尺寸和光学性质的相似性而探讨非线性光学现象。具有100 Femtoseconds的标称脉冲的可调谐光学参数放大器(OPA)在1200-1500nm范围内产生了所有激光曝光。一种基于纤维的光谱仪,通过巩膜中的小切口引入切除的猪眼背面,并放置在视网膜平面上,测量尼尔飞秒激光脉冲的光谱展宽。在多个脉冲能量下观察超出脉冲光的光谱分布的变化,并且随着光束聚焦的位置相对于角膜表面调节,动态地监测。可能需要进一步考虑非线性光学危险,以确保在生命科学,电信,工业加工和生物医学应用中变得更加普遍的超快激光器。

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