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A novel method for holographic femtosecond laser parallel processing using digital blazed grating and the divergent spherical wave

机译:数字闪耀光栅和发散球面波全息全息飞秒激光并行处理的新方法

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A novel method for holographic femtosecond laser parallel processing is proposed, which can suppress the interference of zero order light effectively and improve the energy utilization rate. In order to blaze the target pattern to the peak position of zero-order interference, a phase-only hologram containing digital blazed grating are designed and generated, The energy of the target pattern can be increased to 5.297 times in theory. In addition, by subsequently increasing the phase of divergent spherical wave, the focal plane of the target pattern and the plane of multi-order diffraction beam resulted from pixelated structure of the spatial light modulator (SLM) can be separated. Both the high pass filter and aperture are used to eliminate the influences of zero-order light and multi-order interferential patterns simultaneously. A system based on the phase-only SLM (with resolution of 1920~*1080) is set up to validate the proposed method. The experimental results indicate that the proposed method can achieve high quality holographic femtosecond laser parallel processing with a significantly improved energy utilization rate.
机译:提出了一种全息飞秒激光并行处理的新方法,该方法可以有效抑制零级光的干涉,提高能量利用率。为了将目标图案闪耀到零级干涉的峰值位置,设计并生成了包含数字闪耀光栅的纯相位全息图,理论上目标图案的能量可以增加到5.297倍。此外,通过随后增加发散球面波的相位,可以分离目标图案的焦平面和由空间光调制器(SLM)的像素化结构产生的多阶衍射光束的平面。高通滤波器和光圈都用于同时消除零级光和多级干涉图样的影响。建立了基于纯相位SLM(分辨率为1920〜* 1080)的系统来验证所提出的方法。实验结果表明,该方法可以实现高质量的全息飞秒激光并行处理,并且能量利用率大大提高。

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