Resolving power of diffraction imaging with an objective: a numerical study
Author
Wang, Wenjin; Liu, Jing; Lu, Jun Q.; Ding, Junhua; Hu, Xin-Hua
Abstract
Diffraction imaging in the far-field can detect 3D morphological features of an object for its coherent nature. We describe methods for accurate calculation and analysis of diffraction images of scatterers of single and double spheres by an imaging unit based on microscope objective at non-conjugate positions. A quantitative study of the calculated diffraction imaging in spectral domain has been performed to assess the resolving power of diffraction imaging. It has been shown numerically that with coherent illumination of 532 nm in wavelength the imaging unit can resolve single spheres of 2 μm or larger in diameters and double spheres separated by less than 300 nm between their centers.
Date
2017-05
Citation:
APA:
Wang, Wenjin, & Liu, Jing, & Lu, Jun Q., & Ding, Junhua, & Hu, Xin-Hua. (May 2017).
Resolving power of diffraction imaging with an objective: a numerical study.
,
(),
-
Hua Hu, "Resolving power of diffraction imaging with an objective: a numerical study," Opt. Express 25, 9628-9633 (2017). Retrieved from
http://hdl.handle.net/10342/6119
MLA:
Wang, Wenjin, and Liu, Jing, and Lu, Jun Q., and Ding, Junhua, and Hu, Xin-Hua.
"Resolving power of diffraction imaging with an objective: a numerical study". .
. (),
May 2017.
October 03, 2023.
http://hdl.handle.net/10342/6119.
Chicago:
Wang, Wenjin and Liu, Jing and Lu, Jun Q. and Ding, Junhua and Hu, Xin-Hua,
"Resolving power of diffraction imaging with an objective: a numerical study," , no.
(May 2017),
http://hdl.handle.net/10342/6119 (accessed
October 03, 2023).
AMA:
Wang, Wenjin, Liu, Jing, Lu, Jun Q., Ding, Junhua, Hu, Xin-Hua.
Resolving power of diffraction imaging with an objective: a numerical study. .
May 2017;
():
.
http://hdl.handle.net/10342/6119. Accessed
October 03, 2023.