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Agile Laser Safety Glasses for Protection Against Continuous Wave Laser Sources

机译:防连续波激光源的敏捷激光安全眼镜

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A concept for laser safety glasses is demonstrated where the laser intensity itself introduces phase distortion on the transmitted laser beam and is therefore self-limiting. The absorbed light in the polycarbonate glass heats it and changes its index of refraction. A coating on the surface produces a non-uniform intensity pattern on the transmitted laser beam. This non-uniform intensity results in a non-uniform phase distortion which destroys the coherence of the laser and does not allow the cornea to focus the laser strongly on the retina. The absorption in the glass is the same for all laser wavelengths (the glass is sometimes referred to as a neutral density filter) and therefore the safety glasses are good for all laser wavelengths. The amount of laser absorption required to meet the ANSI standard for max allowable exposure is a transmission of 0.1% and this is experimentally verified by the data obtained. This attenuation is sufficient to protect the eye from damage until the heating and phase distortion kicks in. Once this happens, the protection is better - the higher the incident intensity. Experimental demonstration of the effectiveness of the prototype has been obtained at 488 mm (blue light) and 514 mm (green light) from an argon ion laser with laser duration from 0.04 seconds to 0.25 seconds. The data shows that as you increase the laser intensity beyond a certain value the intensity at the focus of a lens actually decreases, and further increases in intensity lowers the focal plane intensity even further. For the phase distortion safety glasses, we can calculate the transmission which meets the ANSI standard where the phase distortion is optimum. Thus our glasses not only meet the ANSI standard but provide protection for any higher laser intensity. The optical quality of the prototype was very good with no fogging, or optical distortion of transmitted laser, and after the experiment, the prototype returned to the identical optical quality with no permanent optical distortion.
机译:演示了一种激光安全防护眼镜的概念,其中激光强度本身会在透射的激光束上引入相位失真,因此是自限性的。聚碳酸酯玻璃中吸收的光将其加热并改变其折射率。表面上的涂层会在透射的激光束上产生不均匀的强度图案。这种不均匀的强度导致不均匀的相位畸变,该畸变破坏了激光的相干性并且不允许角膜将激光强烈聚焦在视网膜上。对于所有激光波长,玻璃中的吸收都是相同的(有时将玻璃称为中性密度滤光片),因此安全眼镜对于所有激光波长均适用。满足ANSI标准以允许的最大允许曝光量所需的激光吸收量为0.1%的透射率,这已通过获得的数据进行实验验证。这种衰减足以保护眼睛免受伤害,直到加热和相位失真开始为止。一旦发生这种情况,保护效果就更好-入射强度越高。从氩离子激光器在488 mm(蓝光)和514 mm(绿光)下获得了原型有效性的实验证明,激光持续时间为0.04秒至0.25秒。数据显示,当您将激光强度增加到超过特定值时,透镜焦点处的强度实际上会降低,强度的进一步提高会进一步降低焦平面强度。对于相位畸变安全眼镜,我们可以计算出满足ANSI标准(其中相位畸变最佳)的透射率。因此,我们的眼镜不仅符合ANSI标准,还可以保护更高的激光强度。原型的光学质量非常好,没有起雾或透射激光的光学畸变,并且在实验之后,原型恢复了相同的光学质量,没有永久的光学畸变。

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