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首页> 外文期刊>Optics & Laser Technology >Spectral performance of a zero-order liquid-crystal polymer commercial q-plate for the generation of vector beams at different wavelengths
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Spectral performance of a zero-order liquid-crystal polymer commercial q-plate for the generation of vector beams at different wavelengths

机译:零级液晶聚合物商业Q板的光谱性能,用于产生不同波长的矢量梁

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摘要

Liquid-crystal polymer q-plates are commercial devices for generating vector beams at the design wavelength where the device exhibits half-wave (HW) retardance. Since they are not voltage addressable, the operational wavelength remains fixed. In this work we perform a broadband spectral characterization of the q-plate retardance as a function of wavelength, phi(lambda), and identify the wavelengths with retardance values relevant for vector beam generation (pi, pi/2, and 3 pi/2). The wavelength is then used as a tuning parameter to change the device performance from a HW q-plate to a positive-QW or a negative-QW q-plate. These performances are analyzed using the Jones matrix formalism. We present a simple procedure to derive the polarization distribution of the vector beams expected at these QW wavelengths, as a superposition of the input polarization state and the output state of a HW q-plate. Experimental results using the red and blue lines of an Ar-Kr laser and an IR laser diode of 980 nm confirm the theoretical predictions. We show that for input linearly polarized light of 980 nm and 488 nm the device generates hybrid vector beams (where the ellipticity varies with the azimuthal angle), while for 647 nm pure radial vector beams with constant ellipticity are obtained. These results could extend the use of commercial q-plates for multicolour vector beam applications. (C) 2018 Elsevier Ltd. All rights reserved.
机译:液晶聚合物Q-板是用于在设计波长处产生矢量梁的商业设备,其中装置呈现半波(HW)延迟。由于它们不是可寻址的电压,因此操作波长仍然是固定的。在该工作中,我们以波长,PHI(Lambda)的函数执行Q板延迟的宽带光谱表征,并识别与矢量波束生成相关的延迟值(PI,PI / 2和3 PI / 2相关的波长)。然后将波长用作调谐参数,以将设备性能从HW Q-Plab改变为正QW或负QW Q板。使用Jones矩阵形式主义分析这些性能。我们介绍了一种简单的过程来导出预期的这些QW波长的矢量波束的偏振分布,作为输入偏振状态的叠加和HW Q板的输出状态。使用AR-KR激光器的红色和蓝线和980nm的IR激光二极管的实验结果证实了理论预测。我们表明,对于980nm和488nm的输入线性偏振光,器件产生混合矢量梁(其中椭圆性随方位角变化),而获得647nm纯径向矢量束,获得具有恒定椭圆度的较恒定的径向矢量束。这些结果可以扩展使用商业Q-板进行多色载体束应用。 (c)2018年elestvier有限公司保留所有权利。

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