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A Monolithic Gimbal Micro-Mirror Fabricated and Remotely Tuned with a Femtosecond Laser

机译:飞秒激光制造并远程调谐的整体式万向节微镜

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摘要

With the advent of ultrafast lasers, new manufacturing techniques have come into existence. In micromachining, the use of femtosecond lasers not only offers the possibility for three-dimensional monolithic fabrication inside a single optically transparent material, but also a means for remotely, and arbitrarily, deforming substrates with nanometer resolution. Exploiting this principle and combining it with flexure design, we demonstrate a monolithic micro-mirror entirely made with a femtosecond laser and whose orientation is tuned in a non-contact manner by exposing some part of the device to low energy femtosecond pulses. Given the non-contact nature of the process, the alignment can be very precisely controlled with a resolution that is many orders of magnitude better than conventional techniques based on mechanical positioners.
机译:随着超快激光器的出现,新的制造技术应运而生。在微加工中,飞秒激光的使用不仅为在单一光学透明材料内进行三维整体制造提供了可能性,而且为远程和任意变形具有纳米分辨率的基板提供了一种可能。利用这一原理并将其与弯曲设计相结合,我们展示了完全由飞秒激光器制造的单片微镜,并且通过将器件的某些部分暴露于低能量的飞秒脉冲,以非接触方式调整了其方向。考虑到过程的非接触性质,可以非常精确地控制对准,其分辨率比基于机械定位器的常规技术好几个数量级。

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