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Fabrication of Microfluidic Channels by Femtosecond Laser Micromachining and Application in Optofluidics

机译:由飞秒激光微机械加工的微流体通道的制备与optiop流体应用

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Micromachining with femtosecond laser can be exploited to fabricate optical components and microfluidic channels in fused silica, due to internal modification of the glass properties that is induced by the laser beam. In this paper, we refer to the formation of microfluidic channels, where an optimization of the fabrication procedure was conducted by examining etch rate and surface roughness as a function of the irradiation conditions. Microfluidic channels with high and uniform aspect ratio and with smooth sidewalls were obtained, and such structures were successfully integrated with optical components. The obtained results set the foundations towards the development of new optofluidic devices.
机译:可以利用Femtosecond激光的微机械加工以制造熔融二氧化硅中的光学组件和微流体通道,这是由于激光束引起的玻璃性质的内部修改。在本文中,我们参考微流体通道的形成,其中通过作为照射条件的函数检查蚀刻速率和表面粗糙度来进行制造过程的优化。获得具有高和均匀纵横比和具有光滑侧壁的微流体通道,并且这种结构与光学部件成功集成。所获得的结果将基础设定为开发新的Opt流体设备。

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