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Microfabrication by femtosecond laser irradiation

机译:通过飞秒激光照射微制造

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摘要

Femtosecond (fs) laser microfabrication has been gathering more research interests due to its ability to create micro- and sub-micrometer 3D structures. An extremely high light intensity enables multiphoton absorption in transparent materials, upon which the spatial resolution of fabricated elements is confined to the sizes even smaller than optical diffraction limit. Our report will formulate the principles of the laser microfabrication of such applications. A direct application of single-shot pulse-induced optical damage is a 3D optical memory with a storage density of ca. 100 Gbits/cm$+2$/ in silica. Photonic and optoelectronic applications such as optical gratings, 3D inlayed-'atom'- like and 2D cylinder-consisted photonic crystals have been fabricated in silica. Also, photopolymerization of photoresist by a scanning of focal point of laser irradiation solidifies submicrometer rods, which forms photonic lattices when packed into well-defined 3D pattern. Photonic bandgap effects of above-mentioned structures were corroborated by IR Fourier spectroscopy and numerical simulations, by which the success of laser microfabrication was evidenced. Self-focusing of fs-pulses is another possibility of the microstructuring of transparent materials, which is demonstrated in the case of silica. This could find its application in sub-diffraction-limited recording.
机译:Femtosecond(FS)激光微制造已经收集了更多的研究兴趣,因为它产生了微型和亚微米3D结构的能力。极高的光强度使得透明材料中的多光子吸收能够,在该透明材料中,制造元件的空间分辨率限制在甚至小于光衍射极限的尺寸。我们的报告将制定这些应用激光微制造的原理。直接应用单次脉冲诱导的光学损伤是具有CA的存储密度的3D光存储器。 100英镑/ cm $ + 2 $ /二氧化硅。光子和光电子应用如光栅,3D嵌入式 - 类似的光子和2D圆柱组成的光子晶体在二氧化硅中制造。而且,通过激光照射的焦点扫描光致抗蚀剂的光聚合凝固的亚模床杆,其在填充到明确定义的3D图案中时形成光子晶格。通过IR傅里叶光谱和数值模拟来证实了上述结构的光子带隙效果,并且可以证明激光微生物的成功。 FS-脉冲的自聚焦是透明材料微观结构的另一种可能性,这在二氧化硅的情况下证明。这可以在子衍射限制记录中找到其应用。

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