首页> 外文会议>Conference on Laser-Assisted Micro- and Nanotechnologies 2003; Jun 29-Jul 3, 2003; St. Petersburg, Russia >Microscopic and spectroscopic imaging of laser-induced forward transfer and its application to material transfer
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Microscopic and spectroscopic imaging of laser-induced forward transfer and its application to material transfer

机译:激光诱导的正向转移的显微和光谱成像及其在物质转移中的应用

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As a investigation of the process of laser-induced forward transfer (LIFT), the behaviors of atoms, thermally radiating hot droplets and comparatively cold droplets were observed by two-dimensional laser-induced fluorescence (2D-LIF), laser light scattering (LLS) and thermal radiation. The observations were done with different parameters such as ablation laser energy, film thickness and gas pressure. The condition for the deposition of smaller film was guided. On the other hand, as an application, material transfer by LIFT was experimented. Rhodamine 610 laser dye film, which was deposited on silica substrate by LIFT, emitted fluorescence with an excitation by a second harmonic wave of the Nd:YAG laser. Experimental observations show that the fluorescence intensity of the deposited film was dependent on the LIFT process condition. The optimum condition was attained with a 50 nm thickness of the base gold film and 49 mJ/cm~2 of the ablation laser fluence and in vacuum condition.
机译:作为对激光诱导前向转移(LIFT)过程的研究,通过二维激光诱导荧光(2D-LIF),激光散射(LLS)观察了原子,热辐射热液滴和相对较冷的液滴的行为)和热辐射。观察是用不同的参数完成的,例如烧蚀激光能量,膜厚度和气压。指导了较小膜沉积的条件。另一方面,作为应用,通过LIFT进行了材料转移的实验。通过LIFT沉积在二氧化硅衬底上的罗丹明610激光染料膜在Nd:YAG激光的二次谐波的激发下发出荧光。实验观察表明,沉积膜的荧光强度取决于LIFT工艺条件。最佳条件是在真空条件下,基底金膜的厚度为50 nm,消融激光能量密度为49 mJ / cm〜2。

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