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Plasma and nanoparticle shielding during pulsed laser ablation in liquids cause ablation efficiency decrease

机译:在液体中脉冲激光消融期间的等离子体和纳米粒子屏蔽引起粘合效率降低

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Understanding shielding cross-effects is a prerequisite for maximal power-specific nanosecond laser ablation in liquids(LAL).However,discrimination between cavitation bubble(CB),nanoparticle(NP),and shielding,e.g.,by the plasma or a transient vapor layer,is challenging.Therefore,CB imaging by shadowgraphy is performed to better understand the plasma and laser beam-NP interaction during LAL.By comparing the fluence-dependent CB volume for ablations performed with 1 ns pulses with reports from the literature,we find larger energy-specific CB volumes for 7 ns-ablation.The increased CB for laser ablation with higher ns pulse durations could be a first explanation of the efficiency decrease reported for these laser systems having higher pulse durations.Consequently,1 ns-LAL shows superior ablation efficiency.Moreover,a CB cascade occurs when the focal plane is shifted into the liquid.This effect is enhanced when NPs are present in the fluid.Even minute amounts of NPs trapped in a stationary layer decrease the laser energy significantly,even under liquid flow.However,this local concentration in the sticking film has so far not been considered.It presents an essential obstacle in high-yield LAL,shielding already the second laser pulse that arrives and presenting a source of satellite bubbles.Hence,measures to lower the NP concentration on the target must be investigated in the future.
机译:了解屏蔽横向效果是液体(LAL)中最大功率特异性纳秒激光消融的先决条件。但是,空化气泡(Cb),纳米粒子(NP)之间的辨别,例如通过等离子体或瞬态蒸气层,是挑战。因此,通过影像造影的CB成像以更好地了解LAL期间的等离子体和激光束-NP相互作用。比较依赖于来自文献的报告的10S脉冲的流动依赖性CB体积,我们发现更大用于7 ns-ablation的能量特定的CB体积。具有较高NS脉冲持续时间的激光消融的增加的CB可以是对具有更高脉冲持续时间的激光系统的效率降低的第一个解释。应该出现1 ns-lal显示出优异的消融效率。当焦平面被移入液体时,发生Cb级联。当NPS存在于流体中时,效果是增强的。即使在静止中捕获的几分钟NP的NP层数显着降低激光能量,即使在液体流动下。然而,粘贴膜中的局部浓度已经迄今为止未被考虑到。它在高产LAL中呈现了一个基本障碍,屏蔽了到达和呈现的第二激光脉冲卫星气泡的来源。必须在将来调查降低目标NP浓度的措施。

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