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Optimization of a miniature short-wavelength infrared objective optics of a short-wavelength infrared to visible upconversion layer attached to a mobile-devices visible camera

机译:优化了短波长红外到可见光上转换层的微型短波长红外物镜,该物镜连接到移动设备的可见摄像机

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The use of dual cameras in parallax in order to detect and create 3-D images in mobile devices has been increasing over the last few years. We propose a concept where the second camera will be operating in the short-wavelength infrared (SWIR - 1300 to 1800 nm) and thus have night vision capability while preserving most of the other advantages of dual cameras in terms of depth and 3-D capabilities. In order to maintain commonality of the two cameras, we propose to attach to one of the cameras a SWIR to visible upconversion layer that will convert the SWIR image into a visible image. For this purpose, the fore optics (the objective lenses) should be redesigned for the SWIR spectral range and the additional upconversion layer, whose thickness is <1 μm. Such layer should be attached in close proximity to the mobile device visible range camera sensor (the CMOS sensor). This paper presents such a SWIR objective optical design and optimization that is formed and fit mechanically to the visible objective design but with different lenses in order to maintain the commonality and as a proof-of-concept. Such a SWIR objective design is very challenging since it requires mimicking the original visible mobile camera lenses' sizes and the mechanical housing, so we can adhere to the visible optical and mechanical design. We present in depth a feasibility study and the overall optical system performance of such a SWIR mobile-device camera fore optics design.
机译:在过去的几年中,视差中使用双摄像头以检测和创建移动设备中的3D图像一直在增加。我们提出了一个概念,其中第二台摄像机将在短波长红外(SWIR-1300至1800 nm)下运行,因此具有夜视功能,同时保留了双摄像机在深度和3-D能力方面的其他大多数优势。为了保持两个摄像机的通用性,我们建议将SWIR转换为可见的上转换层,将SWIR图像转换为可见图像,以将其中的两个SWIR图像附加到其中一个摄像机。为此,应针对SWIR光谱范围和厚度小于1μm的附加上转换层重新设计前光学器件(物镜)。该层应紧靠移动设备的可见范围相机传感器(CMOS传感器)连接。本文介绍了这样的SWIR物镜光学设计和优化方法,该方法形成并机械地适用于可见物镜设计,但使用不同的透镜以保持通用性并作为概念验证。这样的SWIR物镜设计非常具有挑战性,因为它需要模仿原始的可见移动相机镜头的尺寸和机械外壳,因此我们可以坚持可见的光学和机械设计。我们深入介绍了这种SWIR移动设备相机前光学设计的可行性研究和整体光学系统性能。

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