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Programmable 2-D laser marking device based on a pulsed UV image coherent amplifier

机译:基于脉冲紫外图像相干放大器的可编程二维激光打标装置

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We present a novel technique for engraving microscopic 2D patterns in one step with a UV pulsed laser by means of a versatile programmable approach. The laser beam is divided to an expanded low energy signal beam which is spatially modulated by a LCD modulator and a higher energy pump beam with a plane homogeneous wave front. Both beams are superposed in a highly magnesium doped photorefractive lithium-niobate crystal where an energy transfer towards the weaker signal beam takes place. The spatially modulated and amplified signal beam is then de-magnified and imaged onto the surface where the image has to be engraved. The need for the coherent amplifier rises out of the fact that LCDs are unable to withstand the high energy throughput required for etching. The combination of the amplifier with the amplitude modulator leads to a faster and more flexible solution than laser marking with pixel-by-pixel raster-scan, or fixed mask projection mode. Such a technique can thus be applied to identify valuable items by imprinting a smart and personalised 2D code onto its surface.
机译:我们提出了一种新颖的技术,通过一种通用的可编程方法,可以用紫外线脉冲激光一步一步雕刻出微观2D图案。激光束被分为扩展的低能量信号束和高能量泵浦光束,该信号由LCD调制器在空间上调制,而能量较高的泵浦束具有平面同质波前。两束光都叠加在高镁掺杂的光折变铌酸锂锂晶体中,在该晶体中,能量向较弱的信号束传输。然后将经过空间调制和放大的信号束放大并成像到必须雕刻图像的表面上。由于液晶显示器不能承受蚀刻所需的高能量通过量,因此需要相干放大器。与具有逐像素光栅扫描或固定掩模投影模式的激光打标相比,放大器与幅度调制器的组合可提供更快,更灵活的解决方案。因此,可以通过将智能且个性化的2D代码压印在其表面上来将这种技术应用于识别有价值的物品。

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