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Laser Micromachining of Transparent Glass Using Ultrafast Bessel Beams

机译:超快贝塞尔光束对透明玻璃的激光微加工

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We fabricated optical waveguides in fused silica by focusing femtosecond laser pulses with an axicon. With this technique, we also produced microholes by using chemical etching. The axicon, which is a conical lens, generates an optical beam with a transverse intensity profile that follows a zero-order Bessel function. Bessel beams produced by axicon focusing have a narrow focal line of a few micron width which is invariant along a long distance (>1 cm). By focusing femtosecond pulses with an axicon into fused silica, we induced permanent modifications over the extented focal line of the axicon without scanning axially the glass sample. The waveguides so fabricated exhibit low losses and no detectable birefringence due their excellent circular symmetry. By translating the glass sample during the inscription process, we have fabricated planar waveguides. Microfluidic channels were obtained by soaking the exposed samples into a HF solution.
机译:我们通过用轴锥将飞秒激光脉冲聚焦在熔融石英中制造了光波导。通过这种技术,我们还通过使用化学蚀刻来生产微孔。作为圆锥形透镜的轴锥产生的光束具有遵循零级贝塞尔函数的横向强度分布。通过轴锥聚焦产生的贝塞尔光束具有几微米宽度的狭窄焦线,该焦线沿长距离(> 1厘米)不变。通过将飞秒脉冲与轴锥聚焦到熔融石英中,我们无需沿轴向扫描玻璃样品就可以在轴锥的扩展焦线上进行永久性修改。如此制造的波导由于其优异的圆形对称性而表现出低损耗且没有可检测的双折射。通过在铭刻过程中平移玻璃样品,我们制造了平面波导。通过将暴露的样品浸泡在HF溶液中获得微流体通道。

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