Author:
Zhi Shao-Tao ,Zhang Hai-Jun ,Zhang Dong-Xian ,
Abstract
On the basis of narrow-band filtered annular light-cone illumination with high numerical aperture, a new far-field super-resolution optical microscopic imaging method is proposed, and its physical model is established. Using the scalar diffraction theory, the formula of diffraction intensity in the image plane is derived for annular light-cone illumination and imaging under different numerical apertures. The diffraction patterns are further simulated through the Matlab program, which demonstrates that such a method may significantly increase the microscopic imaging resolution. Experiments have been carried out on a self-build microscopic system, showing that a resolution can be achieved to be better than 150 nm under 450 nm light wavelength and 1.125-1.25 annular numerical apertures. The experimental results are in good agreement with the theoretical predictions, thus proving the feasibility of this microscopic imaging method.
Publisher
Acta Physica Sinica, Chinese Physical Society and Institute of Physics, Chinese Academy of Sciences
Subject
General Physics and Astronomy
Reference16 articles.
1. Reimer L 2000 Scanning Electron Microscopy (Berlin: Springer- Verlag) p12
2. Binnig G, Rohrer H 1982 Helev Phys. Acta 55 726
3. Fu X, Zhang D X, Zhang H J 2009 Chin. Opt. Lett. 7 891
4. Wang Z Y, Li Q, Zhao J, Guo J H 2000 Acta Phys. Sin. 49 1959 (in Chinese) [王子洋, 李勤, 赵钧, 郭继华 2000 物理学报 49 1959]
5. Stephens D J, Allan V J 2003 Science 300 82
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