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Effects of Thermal Annealing on Femtosecond Laser Micromachined Glass Surfaces

机译:热退火对飞秒激光微机械玻璃表面的影响

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摘要

Femtosecond laser micromachining (FLM) of fused silica allows for the realization of three-dimensional embedded optical elements and microchannels with micrometric feature size. The performances of these components are strongly affected by the machined surface quality and residual roughness. The polishing of 3D buried structures in glass was demonstrated using different thermal annealing processes, but precise control of the residual roughness obtained with this technique is still missing. In this work, we investigate how the FLM irradiation parameters affect surface roughness and we characterize the improvement of surface quality after thermal annealing. As a result, we achieved a strong roughness reduction, from an average value of 49 nm down to 19 nm. As a proof of concept, we studied the imaging performances of embedded mirrors before and after thermal polishing, showing the capacity to preserve a minimum feature size of the reflected image lower than 5μm. These results allow for us to push forward the capabilities of this enabling fabrication technology, and they can be used as a starting point to improve the performances of more complex optical elements, such as hollow waveguides or micro-lenses.
机译:Femtosecond激光微机械线(FLM)熔融二氧化硅允许实现三维嵌入式光学元件和微通道,微电动特征尺寸。这些组分的性能受加工表面质量和残余粗糙度的强烈影响。使用不同的热退火工艺证明了玻璃中的3D掩埋结构的抛光,但仍然缺少使用该技术获得的残余粗糙度的精确控制。在这项工作中,我们研究了FLM辐照参数如何影响表面粗糙度,并且我们在热退火后的表面质量的提高表征。结果,我们实现了强烈的粗糙度降低,平均值为49 nm至19 nm。作为概念证据,我们研究了热抛光前后嵌入式镜子的成像性能,显示了保持低于5μm的最小特征尺寸的容量。这些结果允许我们推动该能力技术的能力,并且它们可以用作改善更复杂光学元件的性能的起点,例如空心波导或微透镜。

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