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Retinal Damage Mechanisms for Ultrashort Laser Exposure

机译:超短激光暴露的视网膜损伤机制

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The Air Force has led a research effort to investigate the thresholds and mechanisms for retinal damage from ultrashort laser pulses [i.e. nanosecond (10~(-9) sec) to femtosecond (10~(-15) sec) pulse durations] for the past several years. The outcome is a recommendation for the establishment of maximum permissible exposure limits in the visible and near infrared. We review the progress made in determining trends in retinal damage~1 from laser pulses from one nanosecond to one hundred femtoseconds duration at visible and near-infrared wavelengths including variations in spot size and number of pulses. We discuss the most likely damage mechanisms operative in this pulse width regime and discuss relevance to laser safety.
机译:空军领导了一项研究工作,以研究超短激光脉冲对视网膜造成损害的阈值和机制。过去几年中的微秒(10〜(-9)秒)到飞秒(10〜(-15)秒)的脉冲持续时间。结果是建议建立可见光和近红外光的最大允许暴露极限。我们回顾了在可见光和近红外波长(包括光斑大小和脉冲数的变化)下,确定激光损伤从1纳秒到100飞秒持续时间的视网膜损伤〜1趋势方面取得的进展。我们讨论了在此脉冲宽度范围内最可能起作用的损坏机制,并讨论了与激光安全性相关的问题。

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