首页> 外文会议>Laser applications in microelectronic and optoelectronic manufacturing (LAMOM) XVII >Nanostructure formation on lithium niobate surfaces by high-repetition rate sub-15 fs near-infrared laser pulses
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Nanostructure formation on lithium niobate surfaces by high-repetition rate sub-15 fs near-infrared laser pulses

机译:高重复频率低于15 fs的近红外激光脉冲在铌酸锂表面形成纳米结构

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Due to its electro-optical, acousto-optical, ferroelectric, piezoelectric and nonlinear-optical properties lithium niobate is a material of high technological relevance. Thus, patterning of LiNbO_3 surfaces by laser light may significantly influence the performance of micro-optical devices made of this material. Here, we report on the generation of self-organized nanostructures on surfaces of unpoled LiNbO_3 crystals using tightly focused sub-IS fs pulsed Ti:Sapphire laser light (centre wavelength 800 nm, bandwidth 120 nm, repetition rate 85 MHz) at sub-nanojoule pulse energies. With the LiNbO_3 surface immersed in oil intensities close to the ablation threshold resulted in the formation of shallow ripples of 5-25 nm in height appearing at a periodicity of approximately 220 nm. The ripples were generated by local melting and resolidification of LiNbO_3 involving minor admixture of hydrocarbons. At intensities well beyond the ablation threshold the LiNbO_3 surfaces were patterned densely with tiny cones of 100 - 500 nm in height featuring diameters of a few hundred nanometers. Moreover, lines scanned inside the LiNbO_3 crystals resulted in refractive index changes along the laser traces. In contrast, with the LiNbO_3 surface in air or water, ablation was not observed even at prolonged exposure due to aberrations of the focal spot.
机译:铌酸锂由于具有电光,声光,铁电,压电和非线性光学特性,因此具有很高的技术实用性。因此,通过激光对LiNbO_3表面进行构图可能会极大地影响由这种材料制成的微光学器件的性能。在这里,我们报道了在亚纳米焦耳下使用紧密聚焦的亚IS fs脉冲Ti:蓝宝石激光(中心波长800 nm,带宽120 nm,重复频率85 MHz)在未极化LiNbO_3晶体的表面上生成自组织纳米结构的情况。脉冲能量。将LiNbO_3表面浸入油中的强度接近消融阈值时,会形成5-25 nm高的浅波纹,周期性出现约220 nm。波纹是由LiNbO_3的局部熔化和再凝固(涉及碳氢化合物的少量掺混)产生的。在远远超过烧蚀阈值的强度下,LiNbO_3表面以直径为几百纳米的高度为100-500 nm的微小圆锥体密集地图案化。此外,在LiNbO_3晶体内部扫描的线导致沿激光迹线的折射率变化。相反,在空气或水中的LiNbO_3表面,即使由于焦点像差而长时间曝光也未观察到烧蚀。

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