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Speckle characteristics of laser diodes for SWIR and NIR active imaging

机译:SWIR和NIR主动成像激光二极管的斑点特征

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Laser illumination makes it possible to perform high resolution imaging when ambient light level is insufficient to overcome camera noise. The relatively long coherence length of most lasers, however, causes coherent speckle in the camera image plane, which can result in a significant decrease of the image quality and the maximum achievable target identification range. We characterized several types of NIR and SWIR laser diode illumination sources, with emphasis placed on measuring the properties of coherent speckle observed in the camera image plane. Image plane speckle contrast was measured by illuminating the imaged Lambertian surface with single-mode laser, multi-mode laser, wide-stripe laser with two active junctions and broad-band emission, and NIR and SWIR vertical cavity surface emitting laser (VCSEL) arrays. The impact of various imaging system parameters, including pixel size, imaging lens focal length, F-number, and IFOV on the contrast and characteristic size of the speckle intensity distribution were determined. Speckle contrast dependence on the polarization properties of various reflecting surfaces was measured. The reduction of speckle contrast with increasing source spectral width, and increasing size of spatially incoherent VCSEL emitter arrays will be described. We show that a speckle contrast of 5-10% is achievable for a typical long range SWIR imaging system.
机译:激光照明使得当环境光线水平不足以克服相机噪声时,可以执行高分辨率成像。然而,大多数激光器的相对长度长度导致相机图像平面中的相干斑点,这可能导致图像质量的显着降低和最大可实现的目标识别范围。我们以几种类型的NIR和SWIR激光二极管照明源为特征,重点放置在测量相机图像平面中观察到的相干斑点的性质。通过用单模激光,多模激光,宽带激光照射成像朗伯表​​面,具有两个有源结和宽带发射,以及NIR和SWIR垂直腔表面发射激光器(VCSEL)阵列来测量图像平面斑点对比度。确定各种成像系统参数的影响,包括像素尺寸,成像镜头焦距,F号和IFOV对比度分布的对比度和特征尺寸。测量对各种反射表面的偏振特性的斑点对比度。将描述随着源极光谱宽度增加的散斑对比度,以及增加空间不连贯的VCSEL发射器阵列的增加。我们表明,对于典型的长距离SWIR成像系统,可实现5-10%的散斑对比度。

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