论文标题
可观的元素,用于整个电信范围内聚焦和成像
An achromatic metafiber for focusing and imaging across the entire telecommunication range
论文作者
论文摘要
分散工程对于包括光纤设备在内的大多数现代光学系统的性能至关重要。即使用于内窥镜应用的仪表尺度单模纤维的色散微不足道,但位于纤维端面上的光透镜,用于光学焦点和成像,并且成像遭受强烈的色差。在这里,我们介绍了单模纤维末端的3D成型衍射金属的设计和纳米载,能够在整个近红外电信波长频段范围为1.25至1.65 um的整个近红外电信波长频段中执行具有成分和极化的焦点。这代表了商业使用的纤维的整个单模域。在3D纳米元素元原子中,解锁的高度自由度很大程度上增加了具有21.34的色质金属的时间带宽产品的上限,从而导致群体延迟调制范围从-8到14 fs。此外,我们证明了我们的紧凑和柔性的具有柔性的元素元素在光纤共聚焦成像中的使用,能够在宽带光照明下创建焦点内锋利的图像。这些结果可能会释放纤维元视频对广泛应用的全部潜力,包括高光谱内窥镜成像,飞秒激光辅助治疗,深层组织成像,波长 - 多形的光纤纤维 - 纤维传动,纤维传感和光纤激光器。
Dispersion engineering is essential to the performance of most modern optical systems including fiber-optic devices. Even though the chromatic dispersion of a meter-scale single-mode fiber used for endoscopic applications is negligible, optical lenses located on the fiber end face for optical focusing and imaging suffer from strong chromatic aberration. Here we present the design and nanoprinting of a 3D achromatic diffractive metalens on the end face of a single-mode fiber, capable of performing achromatic and polarization-insensitive focusing across the entire near-infrared telecommunication wavelength band ranging from 1.25 to 1.65 um. This represents the whole single-mode domain of commercially used fibers. The unlocked height degree of freedom in a 3D nanopillar meta-atom largely increases the upper bound of the time-bandwidth product of an achromatic metalens up to 21.34, leading to a wide group delay modulation range spanning from -8 to 14 fs. Furthermore, we demonstrate the use of our compact and flexible achromatic metafiber for fiber-optic confocal imaging, capable of creating in-focus sharp images under broadband light illumination. These results may unleash the full potential of fiber meta-optics for widespread applications including hyperspectral endoscopic imaging, femtosecond laser-assisted treatment, deep tissue imaging, wavelength-multiplexing fiber-optic communications, fiber sensing, and fiber lasers.