Vainrub Arnold, Pustovyy Oleg, Vodyanoy Vitaly
Department of Anatomy, Physiology and Pharmacology, College of Vetirenary Medicine, Auburn University, Auburn, Alabama 36849, USA.
Opt Lett. 2006 Oct 1;31(19):2855-7. doi: 10.1364/ol.31.002855.
Resolution of 90 nm was achieved with a research microscope simply by replacing the standard bright-field condenser with a homebuilt illumination system with a cardioid annular condenser. Diffraction gratings with 100 nm width lines as well as less than 100 nm size features of different-shaped objects were clearly visible on a calibrated microscope test slide. The resolution increase results from a known narrower diffraction pattern in coherent illumination for the annular aperture compared with the circular aperture. This explanation is supported by an excellent accord of calculated and measured diffraction patterns for a 50 nm radius disk.
通过用带有心形环形聚光器的自制照明系统替换标准明场聚光器,一台研究显微镜实现了90纳米的分辨率。在经过校准的显微镜测试载玻片上,可以清晰地看到具有100纳米宽线条的衍射光栅以及不同形状物体小于100纳米尺寸的特征。与圆形孔径相比,环形孔径在相干照明下具有已知更窄的衍射图案,这导致了分辨率的提高。对于一个半径为50纳米的圆盘,计算得到的衍射图案与测量得到的衍射图案高度吻合,这支持了上述解释。