Wang Guochao, Xue Gaopeng, Zhai Qihang, Zhu Junhao, Yu Kangning, Huang Guangyao, Wang Min, Zhong Aihua, Zhu Lingxiao, Yan Shuhua, Li Xinghui
Appl Opt. 2021 Oct 20;60(30):9358-9364. doi: 10.1364/AO.429932.
The design, fabrication, and demonstration of a planar two-dimensional-crossed reflective diffractive grating are proposed to construct a novel optical configuration, to the best of our knowledge, potentially applied for atom cooling and trapping in a magneto-optical trap. Based on the proposed single-beam single-exposure scheme by means of an orthogonal two-axis Lloyd's mirrors interferometer, we rapidly patterned a ∼1µ period grating capable of providing a uniform intensity of the diffracted beams. The key structural parameters of the grating including the array square hole's width and depth were determined, aiming at providing a high energy of the diffracted beams to perform the atom cooling and trapping. To guarantee the diffracted beams to be overlapped possibly, we adopted a polarized beam splitter to guide the optical path of the incident and zero-order diffracted beams. Therefore, one zero-order diffracted beam with a retroreflected mode and four first-order diffracted beams with appropriate optical path constructed a three-dimensional optical configuration of three orthogonal pairs of counterpropagating beams. Finally, three pairs of the counterpropagating cooling laser beams with 9 mm diameter and >10 diffraction efficiencies were achieved, and the circular polarization chirality, purity, and compensation of the desired diffracted beams are further evaluated, which preliminarily validated a high applicability for the magneto-optical trap system.
据我们所知,本文提出了一种平面二维交叉反射衍射光栅的设计、制作与演示,以构建一种新型光学结构,其可能应用于磁光阱中的原子冷却与俘获。基于所提出的借助正交双轴洛埃镜干涉仪的单光束单次曝光方案,我们快速制作了一个周期约为1µ的光栅,该光栅能够提供均匀强度的衍射光束。确定了光栅的关键结构参数,包括阵列方孔的宽度和深度,目的是为了提供高能量的衍射光束以实现原子冷却与俘获。为了确保衍射光束尽可能重叠,我们采用了偏振分束器来引导入射光束和零级衍射光束的光路。因此,一个具有回射模式的零级衍射光束和四个具有适当光路的一级衍射光束构成了三对正交反向传播光束的三维光学结构。最后,实现了三对直径为9 mm且衍射效率大于10%的反向传播冷却激光束,并进一步评估了所需衍射光束的圆偏振手性、纯度和补偿情况,这初步验证了其在磁光阱系统中的高适用性。