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Up-Conversion Sensing of 2D Spatially-Modulated Infrared Information-Carrying Beams with Si-Based Cameras

机译:基于硅的摄像机对二维空间调制红外信息承载光束的上转换感测

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摘要

Up-conversion sensing based on optical heterodyning of an IR (infrared) image with a local oscillator laser wave in a nonlinear optical sum-frequency mixing (SFM) process is a practical solution to circumvent some limitations of IR image sensors in terms of signal-to-noise ratio, speed, resolution, or cooling needs in some demanding applications. In this way, the spectral content of an IR image can become spectrally shifted to the visibleear infrared (VIS/NWIR) and then detected with silicon focal plane arrayed sensors (Si-FPA), such as CCD/CMOS (charge-coupled and complementary metal-oxide-semiconductor devices). This work is an extension of a previous study where we recently introduced this technique in the context of optical communications, in particular in FSOC (free-space optical communications). Herein, we present an image up-conversion system based on a 1064 nm Nd : YVO solid-state laser with a KTP (potassium titanyl phosphate) nonlinear crystal located intra-cavity where a laser beam at 1550 nm 2D spatially-modulated with a binary Quick Response (QR) code is mixed, giving an up-converted code image at 631 nm that is detected with an Si-based camera. The underlying technology allows for the extension of other IR spectral allocations, construction of compact receivers at low cost, and provides a natural way for increased protection against eavesdropping.
机译:在非线性光学和频混合(SFM)过程中,基于使用本地振荡器激光波对IR(红外)图像进行光学外差检测的上转换感测是一种实用的解决方案,可以克服IR图像传感器在信号某些苛刻应用中的噪声比,速度,分辨率或散热需求。这样,IR图像的光谱内容就可以在光谱上移至可见/近红外(VIS / NWIR),然后用硅焦平面阵列传感器(Si-FPA)进行检测,例如CCD / CMOS(电荷耦合)和互补的金属氧化物半导体器件)。这项工作是先前研究的扩展,我们最近在光通信的背景下,特别是在FSOC(自由空间光通信)中介绍了该技术。在这里,我们介绍一种基于1064 nm Nd:YVO固态激光器的图像上转换系统,该激光器具有位于腔内的KTP(磷酸钛氧钾)非线性晶体,其中激光束在1550 nm 2D处进行了空间二值调制混合了快速响应(QR)代码,从而提供了使用基于Si的相机检测到的631 nm上转换代码图像。底层技术允许扩展其他IR频谱分配,以低成本构造紧凑型接收器,并提供一种自然的方式来增强对窃听的保护。

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