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Effects of the spatial frequency composition of the target pattern and the number of quantization levels in diffractive beam shaper design

机译:衍射光束整形器设计中目标图案空间频率组成和量化级数的影响

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摘要

A mathematical model is derived, and numerical simulation is analyzed for laser beam shaping by using multilevel phase-only diffractive optical elements (DOEs). We used the simulated annealing algorithm to design the beam shapers. The result has an essential effect on the diffractive pattern quality caused by the spatial frequency composition of target patterns for the same incident Gaussian beam size and target pattern area. The root mean square error between the diffractive and target patterns is smaller for the target patterns with lower spatial frequencies. Moreover, the effect of spatial frequency composition can be relaxed for the cases of larger incident Gaussian beam size. In addition, finer quality control of a diffraction pattern can be obtained by increasing the number of quantization levels at the DOEs.
机译:通过使用多级仅相位衍射光学元件(DOE),推导了数学模型,并分析了用于激光束整形的数值模拟。我们使用模拟退火算法来设计光束整形器。对于相同的入射高斯光束尺寸和目标图案面积,结果对目标图案的空间频率组成所引起的衍射图案质量具有重要影响。对于具有较低空间频率的目标图案,衍射和目标图案之间的均方根误差较小。此外,对于较大的入射高斯光束尺寸,可以放松空间频率合成的影响。另外,通过增加DOE处的量化水平的数量,可以获得更好的衍射图样质量控制。

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