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用于光束整形的二元纯相位氧化镓衍射光学元件。

Binary phase-only gallium oxide diffractive optical element for beam shaping.

作者信息

Jia Wei, Blair Steve, Sensale-Rodriguez Berardi

机构信息

Department of Electrical and Computer Engineering, The University of Utah, Salt Lake City, UT, 84112, USA.

出版信息

Sci Rep. 2025 Feb 11;15(1):5125. doi: 10.1038/s41598-025-89663-0.

Abstract

This study presents an experimentally validated demonstration of an inverse-optimized binary phase-only gallium oxide diffractive optical element (DOE). This DOE transforms an incident Gaussian beam into a square flat-top beam at the working plane. The design methodology for this binary phase-only DOE beam shaper is founded on an efficient process that integrates the modified Gerchberg-Saxton algorithm and the adjoint method. Experimental characterization of the fabricated device on a single crystal [Formula: see text]gallium oxide substrate is conducted at a wavelength of 532 nm, confirming its ability to transform an incident Gaussian beam into a focused square flat-top beam. Such a device holds significant promise for various high-power laser applications, notably in laser welding and similar domains. Furthermore, because of the ultrawide bandgap of gallium oxide, DOEs operating at shorter wavelengths in the UV are also possible based on this technique.

摘要

本研究展示了一种经过实验验证的反向优化二元纯相位氧化镓衍射光学元件(DOE)。该DOE在工作平面将入射高斯光束转换为方形平顶光束。这种二元纯相位DOE光束整形器的设计方法基于一种高效的过程,该过程整合了改进的格尔奇贝格 - 萨克斯顿算法和伴随方法。在波长为532 nm的条件下,对在单晶[化学式:见正文]氧化镓衬底上制造的器件进行了实验表征,证实了其将入射高斯光束转换为聚焦方形平顶光束的能力。这种器件在各种高功率激光应用中,特别是在激光焊接及类似领域,具有巨大的应用前景。此外,由于氧化镓的超宽带隙,基于该技术还可以实现工作在紫外波段更短波长的DOE。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6046/11814114/e9d83ac473b7/41598_2025_89663_Fig1_HTML.jpg

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