首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Cycloidal diffractive waveplates fabricated using a high-power diode-pumped solid-state laser operating at 532 nm
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Cycloidal diffractive waveplates fabricated using a high-power diode-pumped solid-state laser operating at 532 nm

机译:使用在532nm的高功率二极管泵浦固态激光器制造的摆线衍射波形

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摘要

Diffractive waveplates (DWs) are highly efficient optical components realized by means of a polarization holography setup that makes use of UV/blue laser sources. It is more convenient to perform the holographic recording process with green lasers (e.g., continuous wave operating at 532 nm) because they offer compactness, efficiency, and high power. Unfortunately, the photo-alignment materials used for DW fabrication exhibit limited sensitivity at 532 nm. Herein, we report the realization of cycloidal diffractive waveplates (CDWs) by employing a polarization holographic setup using a high-power, diode-pumped solid-state laser operating at 532 nm. The enabling factor is the use of a photo-alignment material with a broad absorption band extending into the visible part of the spectrum. Samples are characterized in terms of morphological and optical properties. They exhibit a well-defined morphology along with very high diffraction efficiency (approximate to 97%). The possibility to realize CDWs with larger apertures is underway, enabling the realization of a new generation of optical components for integration in modern applications. (C) 2019 Optical Society of America
机译:衍射波形(DWS)是通过使用UV /蓝色激光源的偏振全息设置实现的高效光学组件。使用绿色激光器(例如,在532 nm下运行的连续波)进行全息记录过程更方便,因为它们提供紧凑性,效率和高功率。不幸的是,用于DW制造的光对准材料在532nm处表现出有限的灵敏度。在此,我们通过使用在532nm处的高功率,二极管泵浦固态激光器采用偏振全息设定来报告系环形衍射波形(CDW)的实现。使能因素是使用具有宽度吸收带的光对准材料,该宽吸收带延伸到光谱的可见部分中。样品的特征在于形态学和光学性质。它们具有明确定义的形态,具有非常高的衍射效率(近似为97%)。正在进行实现具有较大孔径的CDW的可能性,从而实现了用于在现代应用中集成的新一代光学元件。 (c)2019年光学学会

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