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Effects of Laser Operating Parameters on Piezoelectric Substrates Micromachining with Picosecond Laser

机译:激光工作参数对皮秒激光压电基板微加工的影响

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Ten picoseconds (200 kHz) ultrafast laser micro-structuring of piezoelectric substrates including AT-cut quartz, Lithium Niobate and Lithium Tantalate have been studied for the purpose of piezoelectric devices application ranging from surface acoustic wave devices, e.g., bandpass filters, to photonic devices such as optical waveguides and holograms. The study examines the impact of changing several laser parameters on the resulting microstructural shapes and morphology. The micromachining rate has been observed to be strongly dependent on the operating parameters, such as the pulse fluence, the scan speed and the scan number. The results specifically indicate that ablation at low fluence and low speed scan tends to form a U-shaped cross-section, while a V-shaped profile can be obtained by using a high fluence and a high scan speed. The evolution of surface morphology revealed that laser pulses overlap in a range around 93% for both Lithium Niobate (LiNbO3) and Lithium Tantalate (LiTaO3) and 98% for AT-cut quartz can help to achieve optimal residual surface roughness.
机译:已经研究了压电基板(包括AT切割石英,铌酸锂和钽酸锂)的十皮秒(200 kHz)超快激光微结构化,其应用范围从表面声波器件(如带通滤波器)到光子器件,应运而生。例如光波导和全息图。这项研究研究了改变几个激光参数对所产生的微观结构形状和形态的影响。已经观察到微加工速率在很大程度上取决于操作参数,例如脉冲通量,扫描速度和扫描次数。结果具体表明,在低注量和低速扫描下的消融倾向于形成U形截面,而通过使用高注量和高扫描速度可以获得V形轮廓。表面形貌的演变表明,铌酸锂(LiNbO 3 )和钽酸锂(LiTaO 3 )的激光脉冲重叠在大约93%的范围内,而AT的激光脉冲重叠在98%的范围内切割石英可以帮助获得最佳的残留表面粗糙度。

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