University of Washington, Department of Electrical and Computer Engineering, Seattle, Washington, United States.
University of Washington, Department of Mechanical Engineering, Human Photonics Lab, Seattle, Washington, United States.
J Biomed Opt. 2023 Sep;28(9):094802. doi: 10.1117/1.JBO.28.9.094802. Epub 2023 Mar 9.
The scanning fiber endoscope (SFE), an ultrasmall optical imaging device with a large field-of-view (FOV) for having a clear forward view into the interior of blood vessels, has great potential in the cardiovascular disease diagnosis and surgery assistance, which is one of the key applications for short-wave infrared biomedical imaging. The state-of-the-art SFE system uses a miniaturized refractive spherical lens doublet for beam projection. A metalens is a promising alternative that can be made much thinner and has fewer off-axis aberrations than its refractive counterpart.
We demonstrate a transmissive metalens working at 1310 nm for a forward viewing endoscope to achieve a shorter device length and better resolution at large field angles.
We optimize the metalens of the SFE system using Zemax, fabricate it using e-beam lithography, characterize its optical performances, and compare them with the simulations.
The SFE system has a resolution of at the center of field (imaging distance 15 mm), an FOV of , and a depth-of-focus of , which are comparable with a state-of-the-art refractive lens SFE. The use of the metalens reduces the length of the optical track from 1.2 to 0.86 mm. The resolution of our metalens-based SFE drops by less than a factor of 2 at the edge of the FOV, whereas the refractive lens counterpart has a times resolution degradation.
These results show the promise of integrating a metalens into an endoscope for device minimization and optical performance improvement.
扫描光纤内窥镜(SFE)是一种超小型光学成像设备,具有大视场(FOV),可清晰地向前观察血管内部,在心血管疾病诊断和手术辅助方面具有巨大潜力,这是短波长红外生物医学成像的关键应用之一。最先进的 SFE 系统使用小型折射球面透镜对来进行光束投影。相比之下,超表面透镜是一种很有前途的替代方案,它可以做得更薄,并且具有更少的离轴像差。
我们展示了一种用于前视内窥镜的工作在 1310nm 的透射超表面透镜,以实现更短的设备长度和在大视场角下更好的分辨率。
我们使用 Zemax 对 SFE 系统的超表面透镜进行了优化,使用电子束光刻技术制造了它,并对其光学性能进行了表征,并将其与模拟结果进行了比较。
SFE 系统在中心视场(成像距离 15mm)处的分辨率为 ,FOV 为 ,景深为 ,与最先进的折射透镜 SFE 相当。超表面透镜的使用将光学轨道的长度从 1.2 毫米缩短到 0.86 毫米。我们的基于超表面透镜的 SFE 在视场边缘的分辨率下降不到 2 倍,而折射透镜的分辨率下降了 倍。
这些结果表明,将超表面透镜集成到内窥镜中以实现器件小型化和提高光学性能具有很大的潜力。