Liu Linxian, Zhang Yingxuan, Chen Jiayin, He Qiaozhi, Shen Yang, Qu Yuan, Yang Jiamiao
Opt Express. 2024 Apr 8;32(8):13946-13954. doi: 10.1364/OE.521743.
Due to the wave nature of light, the diffraction pattern generated by an optical device is sensitive to the shift of wavelength. This fact significantly compromises the digital micromirror device (DMD) in applications, such as full-color holographic display and multi-color fluorescence microscopy. The existing dispersion compensation techniques for DMD involve adding diffractive elements, which causes a large amount of waste of optical energy. Here, we propose an energy-efficient dispersion compensation method, based on a dispersive prism, for DMD. This method simulates the diffraction pattern of the optical fields reflected from the DMD with an angular spectrum model. According to the simulation, a prism and a set of optical components are introduced to compensate for the angular dispersion of DMD-modulated optical fields. In the experiment, our method reduced the angular dispersion, between the 532 nm and 660 nm light beams, by a factor of ∼8.5.
由于光的波动性质,光学器件产生的衍射图案对波长的偏移很敏感。这一事实在诸如全彩色全息显示和多色荧光显微镜等应用中严重影响了数字微镜器件(DMD)。现有的用于DMD的色散补偿技术涉及添加衍射元件,这会导致大量光能的浪费。在此,我们提出一种基于色散棱镜的、用于DMD的节能色散补偿方法。该方法用角谱模型模拟从DMD反射的光场的衍射图案。根据模拟结果,引入一个棱镜和一组光学元件来补偿DMD调制光场的角色散。在实验中,我们的方法将532纳米和660纳米光束之间的角色散降低了约8.5倍。