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Generation of nondiffracting Bessel beam using digital micromirror device

机译:使用数字微镜器件产生非衍射贝塞尔光束

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摘要

We experimentally demonstrated Bessel-like beams utilizing digital micromirror device (DMD). DMD with images imitating the equivalent axicon can shape the collimated Gaussian beam into Bessel beam. We reconstructed the 3D spatial field of the generated beam through a stack of measured cross-sectional images. The output beams have the profile of Bessel function after intensity modulation, and the beams extend at least 50 mm while the lateral dimension of the spot remains nearly invariant. Furthermore, the self-healing property has also been investigated, and all the experimental results agree well with simulated results numerically calculated through beam propagation method. Our observations demonstrate that the DMD offers a simple and efficient method to generate Bessel beams with distinct nondiffracting and self-reconstruction behaviors. The generated Bessel beams will potentially expand the applications to the optical manipulation and high-resolution fluorescence imaging owing to the unique nondiffracting property.
机译:我们通过实验证明了利用数字微镜设备(DMD)的类贝塞尔光束。具有模拟等效轴锥的图像的DMD可以将准直的高斯光束成形为贝塞尔光束。我们通过一堆测量的横截面图像重建了生成光束的3D空间场。强度调制后,输出光束具有贝塞尔函数的轮廓,并且光束延伸至少50 mm,而光斑的横向尺寸几乎保持不变。此外,还研究了自愈性能,所有实验结果与通过束传播方法数值计算的模拟结果吻合良好。我们的观察表明,DMD提供了一种简单有效的方法来生成具有明显的非衍射和自重构行为的贝塞尔光束。由于独特的非衍射特性,所产生的贝塞尔光束将有可能将其扩展到光学操作和高分辨率荧光成像领域。

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