Jia Wei, Menon Rajesh, Sensale-Rodriguez Berardi
Opt Express. 2022 Feb 28;30(5):6808-6817. doi: 10.1364/OE.452472.
In this paper, we discuss flat programmable multi-level diffractive lenses (PMDL) enabled by phase change materials working in the near-infrared and visible ranges. The high real part refractive index contrast (Δn ∼ 0.6) of SbS between amorphous and crystalline states, and extremely low losses in the near-infrared, enable the PMDL to effectively shift the lens focus when the phase of the material is altered between its crystalline and amorphous states. In the visible band, although losses can become significant as the wavelength is reduced, the lenses can still provide good performance as a result of their relatively small thickness (∼ 1.5λ to 3λ). The PMDL consists of SbS concentric rings with equal width and varying heights embedded in a glass substrate. The height of each concentric ring was optimized by a modified direct binary search algorithm. The proposed designs show the possibility of realizing programmable lenses at design wavelengths from the near-infrared (850 nm) up to the blue (450 nm) through engineering PMDLs with SbS. Operation at these short wavelengths, to the best of our knowledge, has not been studied so far in reconfigurable lenses with phase-change materials. Therefore, our results open a wider range of applications for phase-change materials, and show the prospect of SbS for such applications. The proposed lenses are polarization insensitive and can have the potential to be applied in dual-functionality devices, optical imaging, and biomedical science.
在本文中,我们讨论了由在近红外和可见光范围内工作的相变材料实现的平面可编程多级衍射透镜(PMDL)。非晶态和晶态之间的SbS具有高的实部折射率对比度(Δn ∼ 0.6),并且在近红外区域损耗极低,这使得当材料在其晶态和非晶态之间改变相位时,PMDL能够有效地移动透镜焦点。在可见光波段,尽管随着波长减小损耗可能会变得显著,但由于透镜相对较小的厚度(约1.5λ至3λ),它们仍然可以提供良好的性能。PMDL由嵌入玻璃基板中的宽度相等但高度不同的SbS同心环组成。通过改进的直接二进制搜索算法对每个同心环的高度进行了优化。所提出的设计表明,通过使用SbS设计PMDL,有可能在从近红外(850 nm)到蓝光(450 nm)的设计波长下实现可编程透镜。据我们所知,到目前为止尚未在具有相变材料的可重构透镜中研究过在这些短波长下的操作。因此,我们的结果为相变材料开辟了更广泛的应用范围,并展示了SbS在这类应用中的前景。所提出的透镜对偏振不敏感,并且有潜力应用于双功能器件、光学成像和生物医学科学。