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Thermal lensing from near-infrared laser radiation in an artificial eye

机译:人造眼中近红外激光辐射的热透镜

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A confocal imaging system mounted to a micrometer stage was used to image the thermal lens induced into a water filled Cain-cell artificial eye. A dual-beam pump-probe geometry was used to quantify the 633-nm visible wavelength probe beam's transient response when exposed to the near-infrared pump-beam source. The infrared laser radiation wavelengths tested were 1110, 1130, 1150 and 1318 nm for 1-s exposures to 450-mW of power. Analysis of video data revealed the amount of refractive shift, induced by the thermal lens, as a function of time. Data demonstrate how the formation and dissipation of the thermal lens follow a logarithmic excitation and exponential decay in time respectively. Confocal imaging showed that thermal lensing was strongest for the 1150-nm wavelength followed by 1130, 1318 and 1110-nm.
机译:使用安装在千分尺平台上的共焦成像系统对热透镜成像,该热透镜被感应到充满水的Cain细胞人工眼中。当暴露于近红外泵浦光束源时,使用双光束泵浦探针几何结构来量化633 nm可见波长探测光束的瞬态响应。在450兆瓦功率下暴露1秒,测试的红外激光辐射波长为1110、1130、1150和1318 nm。对视频数据的分析显示,由热透镜引起的屈光偏移量是时间的函数。数据表明,热透镜的形成和耗散如何分别随时间进行对数激发和指数衰减。共焦成像显示,热透镜在1150 nm波长处最强,其次是1130、1318和1110 nm。

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