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Effects of laser energy fluence on the onset and growth of the Rayleigh-Taylor instabilities and its influence on the topography of the Fe thin film grown in pulsed laser deposition facility

机译:激光能量通量对Rayleigh-Taylor不稳定性的开始和生长的影响及其对脉冲激光沉积设备中生长的Fe薄膜形貌的影响

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摘要

The effect of laser energy fluence on the onset and growth of Rayleigh-Taylor (RT) instabilities in laser induced Fe plasma is investigated using time-resolved fast gated imaging. The snow plow and shock wave models are fitted to the experimental results and used to estimate the ablation parameters and the density of gas atoms that interact with the ablated species. It is observed that RT instability develops during the interface deceleration stage and grows for a considerable time for higher laser energy fluence. The effects of RT instabilities formation on the surface topography of the Fe thin films grown in pulsed laser deposition system are investigated (i) using different laser energy fluences for the same wavelength of laser radiation and (ii) using different laser wavelengths keeping the energy fluence fixed. It is concluded that the deposition achieved under turbulent condition leads to less smooth deposition surfaces with bigger sized particle agglomerates or network.
机译:使用时间分辨快速门控成像研究了激光能量通量对激光诱导的Fe等离子体中Rayleigh-Taylor(RT)不稳定性的发作和生长的影响。扫雪机和冲击波模型适合实验结果,并用于估算烧蚀参数和与烧蚀物种相互作用的气体原子密度。可以观察到,RT不稳定在界面减速阶段发展,并在相当长的时间内增长,以提高激光能量通量。 RT不稳定性形成对脉冲激光沉积系统中生长的Fe薄膜表面形貌的影响(i)对相同波长的激光辐射使用不同的激光能量通量,以及(ii)使用不同的激光波长保持能量通量固定。结论是,在湍流条件下实现的沉积导致具有较大尺寸的颗粒团聚体或网络的较不光滑的沉积表面。

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