论文标题
本科实验室光的空间结构
Spatial structuring of light for undergraduate laboratory
论文作者
论文摘要
最近,空间光调节器已成为光学实验室以及工业环境中的常见工具,以塑造光束的空间结构。尽管这些设备通常很容易使用,但它们通常以高成本的价格产生,因此它们远非许多本科实验室中的实施。但是,在过去的几年中,开发更具成本效益的投影仪的进展导致了以所谓的数字微型设备(DMD)形式的负担得起的空间调制器。价格降低以及它们的简单用法,使此类设备越来越适合本科实验室,以展示光场的光学效果和塑造。在这里,我们展示了使DMD可用的最具成本效益的方法之一,即将投影仪评估模块变成计算机控制的空间光调制器。我们解释了潜在的功能以及如何在本科实验室中使用这种低成本的空间光调节器。我们进一步表征了该设备对最常用的激光波长的效率,并展示了适用于从单个和多缝衍射到光学傅立叶变换的本科实验室的各种示例性光学实验。最后,我们表明,使用振幅全息图,该设备可用于生成横向空间模式,例如拉格雷高斯梁,是最常用的空间结构梁之一。
In recent times, spatial light modulators have become a common tool in optics laboratories as well as industrial environment to shape the spatial structure of a beam. Although these devices are often easy to use, they usually come at a high cost such that they are far from being implemented in a lot of undergraduate laboratories. However, over the last years, the progress in developing more cost-effective projectors has led to affordable spatial light modulators in the form of so-called Digital Micromirror Devices (DMD). This reduction in price, as well as their simple usage, make such devices increasingly suitable for undergraduate laboratories to demonstrate optical effects and the shaping of light fields. Here, we show one of the most cost-effective ways to make a DMD available, namely turning a projector evaluation module into a computer-controlled spatial light modulator. We explain the underlying functioning and how this low-cost spatial light modulator can be used in undergraduate laboratories. We further characterize the efficiency of the device for the most commonly used laser wavelengths and demonstrate various exemplary optics experiments suitable for undergraduate laboratories ranging from single and multi-slit diffraction, to optical Fourier transformations. Lastly, we show that using amplitude holography, the device can be used to generate transverse spatial modes, e.g. Laguerre-Gaussian beam, which are one of the most commonly used spatially structured beams.