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Self-Visualization of Transparent Microscopic Objects in Optical Glasses under the Conditions of the Thermal Self-Action of an Illuminating Laser Beam

机译:光学玻璃中透明微观物体在照射激光束热自作用条件下的自可视化

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摘要

We demonstrate the process of adaptive self-visualization of small-scale transparent objects and structures in weakly absorbing optical glasses (a glass plate made of K8 and an NS-1 neutral density filter) placed in the Fourier plane of the optical system under the conditions of thermal self-action of the illuminating laser beam. The process is based on the ideology of the classical Zernike phase contrast method. The process is implemented at the level of power of radiation of the illuminated object varying from several milliwatts to tens of watts in the visible and IR spectral ranges. The conducted experiments indicate that the visualization takes place in all glasses and optical elements fabricated from them at an appropriate level of the radiation power.
机译:我们展示了在照明激光束的热自作用条件下,放置在光学系统傅里叶平面的弱吸收光学玻璃(由 K8 制成的玻璃板和 NS-1 中性密度滤光片)中小尺度透明物体和结构的自适应自我可视化过程。该过程基于经典 Zernike 相差方法的意识形态。该过程是在可见光和红外光谱范围内从几毫瓦到几十瓦不等的被照物体的辐射功率水平上实现的。所进行的实验表明,可视化发生在所有玻璃和由它们制成的光学元件中,具有适当的辐射功率水平。

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