TY - JOUR
T1 - Effect of fabrication errors on axial super-resolution property of a three-zone pupil filter
AU - Qiu, Lirong
AU - Zhao, Weiqian
AU - Ding, Xuemei
PY - 2006/12/4
Y1 - 2006/12/4
N2 - Two models have been established using the basic definitions of super-resolution characteristic parameters for normalized spot size GA and Strehl ratio SA, of a three-zone axial super-resolution pupil filter with fabrication errors, to quantitatively analyze the effect of these fabrication errors on the axial super-resolution property. These new models established to describe the analytic relationship of GAe and SAe of a pupil filter with its fabrication errors and its transmission function A(ρ), phase function φ(ρ) and structural parameters, directly relate the super-resolution parameters of a three-zone axial super-resolution pupil filter to its fabrication errors to make the quantitative analyses of the effect of fabrication errors easier, thereby providing a theoretical basis for the analysis, design and fabrication of a three-zone axial super-resolution pupil filter. The models established for GAe and SAe have been used to analyze the effect of the fabrication errors of a pupil filter on its super-resolution property, with a three-zone phase-only pupil filters as example.
AB - Two models have been established using the basic definitions of super-resolution characteristic parameters for normalized spot size GA and Strehl ratio SA, of a three-zone axial super-resolution pupil filter with fabrication errors, to quantitatively analyze the effect of these fabrication errors on the axial super-resolution property. These new models established to describe the analytic relationship of GAe and SAe of a pupil filter with its fabrication errors and its transmission function A(ρ), phase function φ(ρ) and structural parameters, directly relate the super-resolution parameters of a three-zone axial super-resolution pupil filter to its fabrication errors to make the quantitative analyses of the effect of fabrication errors easier, thereby providing a theoretical basis for the analysis, design and fabrication of a three-zone axial super-resolution pupil filter. The models established for GAe and SAe have been used to analyze the effect of the fabrication errors of a pupil filter on its super-resolution property, with a three-zone phase-only pupil filters as example.
KW - Axial super-resolution
KW - Etching error
KW - Pupil filter
KW - Super-resolution technology
UR - http://www.scopus.com/inward/record.url?scp=33750620823&partnerID=8YFLogxK
U2 - 10.1016/j.ijleo.2005.11.016
DO - 10.1016/j.ijleo.2005.11.016
M3 - Article
AN - SCOPUS:33750620823
SN - 0030-4026
VL - 117
SP - 563
EP - 568
JO - Optik
JF - Optik
IS - 12
ER -