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Efficient laser cleaning of small particulates using pulsed laser irradiation synchronized with liquid-film deposition

机译:使用脉冲激光辐照与液膜沉积同步有效地清洁小颗粒

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Abstract: Pulsed laser heating of a surface is shown to be a promising new approach for effective cleaning of small particulate contaminations. Various versions of such a technique of laser cleaning is possible, depending on where the laser irradiation is absorbed and whether a thin film is deposited on the surface to enhance the cleaning. We have observed that laser cleaning with the highest efficiency can be achieved by choosing a laser wavelength (typically ultraviolet) that is strongly absorbed by the surface, and by pulse-depositing a water film of thickness on the order of microns on the surface momentarily before the pulse laser irradiation. This permits the effective removal of particles smaller than $APEQ 20 $mu@m, down to as small as 0.1 $mu@m, from a solid surface, using a modest ultraviolet laser fluence of $APEQ 0.1 J/cm$+2$/.!9
机译:摘要:表面脉冲激光加热被证明是有效清洁小颗粒污染物的一种有前途的新方法。这种激光清洁技术的各种形式都是可能的,具体取决于吸收激光辐照的位置以及是否在表面上沉积了薄膜以增强清洁效果。我们已经观察到,可以通过选择被表面强烈吸收的激光波长(通常是紫外线),并通过在表面上瞬间沉积厚度为微米级的水膜来实现最高效率的激光清洁。脉冲激光照射。这允许使用适度的$ APEQ 0.1 J / cm $ + 2 $的紫外激光通量从固体表面有效去除小于$ APEQ 20 $ mu @ m的颗粒,低至0.1 $ mu @ m。 /.!9

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