Experimental Demonstration of a Highly Efficient Fan-out Polarization Grating

Highly efficient fan-out elements are crucial in coherent beam combining architectures especially in coupled laser resonators where the beam passes through the fan-out element twice per round trip. Although the theoretical efficiency is usually less than 86%, the Dammann gratings are ubiquitously ut...

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Bibliographic Details
Published inScientific reports Vol. 6; no. 1; p. 39626
Main Authors Wan, Chenhao, Chen, Jian, Tang, Xiahui, Zhan, Qiwen
Format Journal Article
LanguageEnglish
Published England Nature Publishing Group 23.12.2016
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Summary:Highly efficient fan-out elements are crucial in coherent beam combining architectures especially in coupled laser resonators where the beam passes through the fan-out element twice per round trip. Although the theoretical efficiency is usually less than 86%, the Dammann gratings are ubiquitously utilized in a variety of types of coherent beam combining systems due to the facile design and fabrication. In the current paper, we experimentally demonstrate a highly efficient fan-out polarization grating. It is the first time to our knowledge that all the three space-variant parameters of a polarization grating are simultaneously optimized to achieve the function of multi-beam splitting. Besides the high fan-out efficiency, the ability to control the polarization states of individual split beams is another advantage of this polarization grating. The novel polarization grating is promising to find applications in laser beam combining systems.
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ISSN:2045-2322
2045-2322
DOI:10.1038/srep39626