Sabatyan Arash, Golbandi Marjan
J Opt Soc Am A Opt Image Sci Vis. 2018 Jul 1;35(7):1243-1253. doi: 10.1364/JOSAA.35.001243.
This study introduces and examines the diffraction properties of a so-called petal-like zone plate, which comprises Fresnel zones analogous to petals. We show that the focusing behavior of this novel type of zone plate depends on the number of petals included in the element. For a small value of the petal frequency, we observe star-like diffraction patterns at the focal plane, whose number of star arms equals the petal frequency of the element when the frequency is an odd integer and is twice as large as the petal frequency when it is an even number. In addition, we have shown that the star-like pattern rotates when it passes through the focus. Moreover, it is demonstrated that the element acts as a long depth bifocal diffractive lens for a large value of the petal frequency. The spacing between the foci is simply controlled by a so-called shifting parameter. At the same time, an annular beam is observed in the middle of the line joining the two foci together. Consequently, an axial bottle-like beam is produced around the focus, whose size could be simply monitored. Simulation results are followed and verified by experimental works.
本研究介绍并研究了一种所谓花瓣状波带片的衍射特性,该波带片由类似于花瓣的菲涅耳区组成。我们表明,这种新型波带片的聚焦行为取决于元件中包含的花瓣数量。对于较小的花瓣频率值,我们在焦平面观察到星状衍射图案,当频率为奇数整数时,星臂的数量等于元件的花瓣频率,当频率为偶数时,星臂数量是花瓣频率的两倍。此外,我们还表明,星状图案在通过焦点时会旋转。而且,已证明对于较大的花瓣频率值,该元件可作为长景深双焦衍射透镜。焦点之间的间距可通过一个所谓的偏移参数简单控制。同时,在连接两个焦点的线的中间观察到一个环形光束。因此,在焦点周围产生一个轴向瓶状光束,其尺寸可简单监测。仿真结果随后通过实验工作得到验证。