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Speckle characteristics of a laser projector using nonmodal laser emission of a semiconductor laser

机译:使用半导体激光器的非模态激光发射的激光投影仪的散斑特性

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In this contribution we show how spatially incoherent emission from a broad-area vertical-cavity surface-emitting laser (BAVCSEL) can be used for low-speckle laser projection. In our projection setup, we use a microlens beam homogenizer in order to homogenize the intensity distribution and to exploit the low spatial coherence of the VCSEL. In order to investigate the speckle in a projection setup using a BA-VCSEL as light source, we compare speckle values in case of modal and nonmodal emission of the BA-VCSEL. Furthermore, the microlens beam homogenizer can either be illuminated with the laser's near field or far field, leading to comparable results. Speckle contrast values as low as 3.5% in case of nearfield illumination, and 2.5% in case of farfield illumination, are measured without using any additional or mechanically moving components to destroy the coherence of the laser beam. The microlens array in the setup is essential in order to obtain speckle reduction, since it generates an overlap of mutually independent speckle patterns, thus reducing the overall speckle in the projected image. We successfully model the speckle contrast reduction, taking into account all contributing speckle reducing factors.
机译:在这一贡献中,我们展示了广域垂直腔面发射激光器(BAVCSEL)的空间不相干发射如何用于低散斑激光投影。在我们的投影设置中,我们使用微透镜光束均化器以使强度分布均匀化并利用VCSEL的低空间相干性。为了研究使用BA-VCSEL作为光源的投影设置中的散斑,我们比较了BA-VCSEL的模态和非模态发射情况下的散斑值。此外,可以用激光的近场或远场照射微透镜光束均化器,从而获得可比的结果。在不使用任何其他或机械移动组件破坏激光束相干的情况下,测量近场照明时的斑点对比度值低至3.5%,而在远场照明情况下可降低2.5%。设置中的微透镜阵列对于获得斑点减少是必不可少的,因为它会产生相互独立的斑点图案重叠,从而减少投影图像中的整体斑点。考虑到所有有助于减少斑点的因素,我们成功地对斑点对比度降低进行了建模。

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