Yu Jiun-Yann, Liao Chien-Sheng, Zhuo Zong-Yan, Huang Chen-Han, Chui Hsiang-Chen, Chu Shi-Wei
Department of Physics, National Taiwan University, 1, Sec. 4, Roosevelt Rd., Taipei 10617, Taiwan.
Rev Sci Instrum. 2009 Nov;80(11):113704. doi: 10.1063/1.3254021.
Diversified research interests in scanning laser microscopy nowadays require broadband capability of the optical system. Although an all-mirror-based optical design with a suitable metallic coating is appropriate for broad-spectrum applications from ultraviolet to terahertz, most researchers prefer lens-based scanning systems despite the drawbacks of a limited spectral range, ghost reflection, and chromatic aberration. One of the main concerns is that the geometrical aberration induced by off-axis incidence on spherical mirrors significantly deteriorates image resolution. Here, we demonstrate a novel geometrical design of a spherical-mirror-based scanning system in which off-axis aberrations, both astigmatism and coma, are compensated to reach diffraction-limited performance. We have numerically simulated and experimentally verified that this scanning system meets the Marechal condition and provides high Strehl ratio within a 3 degrees x 3 degrees scanning area. Moreover, we demonstrate second-harmonic-generation imaging from starch with our new design. A greatly improved resolution compared to the conventional mirror-based system is confirmed. This scanning system will be ideal for high-resolution linear/nonlinear laser scanning microscopy, ophthalmoscopic applications, and precision fabrications.
如今,扫描激光显微镜多样化的研究兴趣需要光学系统具备宽带能力。尽管基于全反射镜且带有合适金属涂层的光学设计适用于从紫外到太赫兹的广谱应用,但大多数研究人员更喜欢基于透镜的扫描系统,尽管其存在光谱范围有限、鬼反射和色差等缺点。主要担忧之一是,离轴入射到球面镜上所引起的几何像差会显著降低图像分辨率。在此,我们展示了一种基于球面镜的扫描系统的新颖几何设计,其中像散和彗差等离轴像差得到了补偿,从而达到衍射极限性能。我们已经通过数值模拟和实验验证,该扫描系统满足马雷夏尔条件,并在3度×3度的扫描区域内提供高斯特列尔比。此外,我们用新设计展示了淀粉的二次谐波产生成像。与传统的基于反射镜的系统相比,分辨率有了极大提高。该扫描系统将是高分辨率线性/非线性激光扫描显微镜、检眼镜应用和精密制造的理想选择。