Kerridge-Johns William R, Jaillot Jean-Benoît, Damzen Michael J
Appl Opt. 2021 Apr 20;60(12):3510-3516. doi: 10.1364/AO.422625.
Many vortex-generation techniques have been developed to address a range of potential applications, exploiting their unique amplitude and phase profiles and their possession of orbital angular momentum. In this work, we present what may be the simplest method of vortex beam generation, requiring only a wedged optic: the wedge-plate shearing interferometer (WPSI). We show that the WPSI can reflect a first order Laguerre-Gaussian vortex beam () with a theoretical purity of >99 from an input fundamental Gaussian beam, with 98% purity experimentally demonstrated. We demonstrate 1% power conversion with a route to 14%. The monolithic WPSI is a simple, compact, and highly stable device, which can operate at any wavelength that the material is transparent to. We anticipate that it will be useful where sampling a robust, high-purity vortex beam from a Gaussian laser beam is required, including low-cost vortex generation for metrology or education.
为满足一系列潜在应用需求,人们已开发出多种涡旋产生技术,这些技术利用了涡旋独特的振幅和相位分布以及其轨道角动量特性。在这项工作中,我们展示了一种可能是最简单的涡旋光束产生方法,仅需一块楔形光学元件:楔形平板剪切干涉仪(WPSI)。我们表明,WPSI能够从输入的基模高斯光束反射出理论纯度大于99%的一阶拉盖尔 - 高斯涡旋光束(),实验证明其纯度为98%。我们展示了1%的功率转换效率,并有望提高到14%。单片式WPSI是一种简单、紧凑且高度稳定的装置,可在材料透明的任何波长下工作。我们预计,在需要从高斯激光束中获取强大、高纯度涡旋光束的场合,它将非常有用,包括用于计量学或教育领域的低成本涡旋产生。