3.8 Proceedings Paper

Hologram optimized in holographic laser processing system

出版社

SPIE-INT SOC OPTICAL ENGINEERING
DOI: 10.1117/12.2616251

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hologram; optimization; three-dimension; laser processing; high-stability

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The proposed method optimizes holograms in holographic laser processing, significantly increasing the uniformity of optical patterns. This provides high-stability to the holographic laser processing system and makes it suitable for high-precision, high-throughput applications in the field of 3D manufacturing.
We proposed an optimization method of a hologram in holographic laser processing. The laser beam was diffracted by a designed computer-generated hologram (CGH) displayed on a liquid-crystal-on-silicon (SLM), and then formed spatially shaped three-dimensional optical pattern which detected by a CCD image sensor at different focal position for continuously optimizing with the weighted iterative Fourier transform (WIFT) algorithm. The uniformity of the pattern was increased from 11% to 95%, which was also well proved by the corresponding 3D processing results. This method provides the holographic laser processing system with high-stability, that is, the ability to dynamically compensate for system imperfections, and has the ability to be suitable for a wide range of high-precision, high-throughput applications in the field of 3D manufacturing.

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