High damage threshold liquid crystal binary mask for laser beam shaping

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Abstract

In order to improve the damage threshold and enlarge the aperture of a laser beam shaper, photolithographic patterning technology is adopted to design a new type of liquid crystal binary mask. The inherent conductive metal layer of commercial liquid crystal electro-optical spatial light modulators is replaced by azobenzene-based photoalignment layers patterned by noncontact photolithography. Using the azobenzene-based photoalignment layer, a liquid crystal binary mask for beam shaping is fabricated. In addition, the shaping ability, damage threshold, write/erase flexibility and stability of the liquid crystal binary mask are tested. Using a 1 Hz near-IR (1064 nm) laser, the multiple-shot nanosecond damage threshold of the liquid crystal mask is measured to be higher than 15 J/cm2. The damage threshold of the azobenzene-based photoalignment layer is higher than 50 J/cm2 under the same testing conditions.

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APA

Xia, G., Fan, W., Huang, D., Cheng, H., Guo, J., & Wang, X. (2019). High damage threshold liquid crystal binary mask for laser beam shaping. High Power Laser Science and Engineering, 7. https://doi.org/10.1017/hpl.2018.69

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