Department of Electrical and Computer Engineering, University of Washington, Seattle, WA, 98195, USA.
Institute for Nano-Engineered Systems, University of Washington, Seattle, WA, 98195, USA.
Sci Rep. 2022 Mar 30;12(1):5385. doi: 10.1038/s41598-022-09277-8.
Miniature varifocal lenses are crucial for many applications requiring compact optical systems. Here, utilizing electro-mechanically actuated 0.5-mm aperture infrared Alvarez meta-optics, we demonstrate 3.1 mm (200 diopters) focal length tuning with an actuation voltage below 40 V. This constitutes the largest focal length tuning in any low-power electro-mechanically actuated meta-optic, enabled by the high energy density in comb-drive actuators producing large displacements at relatively low voltage. The demonstrated device is produced by a novel nanofabrication process that accommodates meta-optics with a larger aperture and has improved alignment between meta-optics via flip-chip bonding. The whole fabrication process is CMOS compatible and amenable to high-throughput manufacturing.
微型变焦距透镜对于许多需要紧凑光学系统的应用至关重要。在这里,我们利用电机械驱动的 0.5 毫米孔径红外阿雷瓦雷斯超材料,演示了 3.1 毫米(200 屈光度)焦距调节,其驱动电压低于 40 伏。这是任何低功率电机械驱动超材料中最大的焦距调节,这得益于在相对较低的电压下产生大位移的梳状驱动器中的高能量密度。所展示的器件是通过一种新颖的纳米制造工艺制造的,该工艺可以容纳具有更大孔径的超材料,并通过倒装芯片键合改善了超材料之间的对准。整个制造工艺与 CMOS 兼容,适用于高通量制造。