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[CrossRef]

F. Yan, Z. Li-gong, and Z. Xue-jun, “Image Restoration of an Off-axis Three mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(1), 0170081–0170088 (2008).

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

F. Yan, Z. Li-gong, and Z. Xue-jun, “A Design of Off-axis Three Mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(6), 063001 (2008).

[CrossRef]

J. Ojeda-Castañeda, J. E. Landgrave, and C. M. Gómez-Sarabia, “Conjugate phase plate use in analysis of the frequency response of imaging systems designed for extended depth of field,” Appl. Opt. 47(22), E99–E105 (2008).

[CrossRef]
[PubMed]

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V. Sudhakar Prasad, P. Panca, R. J. Plemmons, T. C. Torgersen, and J. van der Gracht, “Pupil-phase optimization for extended-focus, aberration-corrected imaging systems,” Proc. SPIE 5559, 335–345 (2004).

[CrossRef]

P. Siarry, A. Petrowski, and M. Bessaou, “A multipopulation genetic algorithm aimed at multimodal optimization,” Adv. Eng. Software 33(4), 207–213 (2002).

[CrossRef]

S. Mezoouari and A. R. Harvey, “Wavefront coding for aberration compensation in thermal imaging systems,” Proc. SPIE 4442, 34–42 (2001).

[CrossRef]

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[CrossRef]
[PubMed]

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[CrossRef]

S. Bagheri, P. E. X. Silveira, and D. Pucci de Farias, “Analytical optimal solution of the extension of the depth of field using cubic phase Wavefront Coding,” J. Opt. Soc. Am. 25(5), 1051–1063 (2008).

[CrossRef]

P. Siarry, A. Petrowski, and M. Bessaou, “A multipopulation genetic algorithm aimed at multimodal optimization,” Adv. Eng. Software 33(4), 207–213 (2002).

[CrossRef]

K. H. Brenner, A. W. Lohmann, and J. Ojeda-Castaneda, “The ambiguity function as a polar display of the OTF,” Opt. Commun. 44(5), 323–326 (1983).

[CrossRef]

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

S. Mezouari, G. Muyo, and A. R. Harvey, “Circular symmetric phase filters for control of primary third-order aberrations:coma and astigmatism,” J.Opt.Soc.Am.A 23, 1058–1062 (2006).

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[CrossRef]
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S. Mezoouari and A. R. Harvey, “Wavefront coding for aberration compensation in thermal imaging systems,” Proc. SPIE 4442, 34–42 (2001).

[CrossRef]

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

F. Yan, Z. Li-gong, and Z. Xue-jun, “A Design of Off-axis Three Mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(6), 063001 (2008).

[CrossRef]

F. Yan, Z. Li-gong, and Z. Xue-jun, “Image Restoration of an Off-axis Three mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(1), 0170081–0170088 (2008).

K. H. Brenner, A. W. Lohmann, and J. Ojeda-Castaneda, “The ambiguity function as a polar display of the OTF,” Opt. Commun. 44(5), 323–326 (1983).

[CrossRef]

D. C. van Leijenhorst, C. B. Lucasius, and J. M. Thijssen, “Optical design with the aid of a genetic algorithm,” Biosystems 37(3), 177–187 (1996).

[CrossRef]
[PubMed]

S. Mezoouari and A. R. Harvey, “Wavefront coding for aberration compensation in thermal imaging systems,” Proc. SPIE 4442, 34–42 (2001).

[CrossRef]

S. Mezouari, G. Muyo, and A. R. Harvey, “Circular symmetric phase filters for control of primary third-order aberrations:coma and astigmatism,” J.Opt.Soc.Am.A 23, 1058–1062 (2006).

K. H. Brenner, A. W. Lohmann, and J. Ojeda-Castaneda, “The ambiguity function as a polar display of the OTF,” Opt. Commun. 44(5), 323–326 (1983).

[CrossRef]

V. Sudhakar Prasad, P. Panca, R. J. Plemmons, T. C. Torgersen, and J. van der Gracht, “Pupil-phase optimization for extended-focus, aberration-corrected imaging systems,” Proc. SPIE 5559, 335–345 (2004).

[CrossRef]

P. Siarry, A. Petrowski, and M. Bessaou, “A multipopulation genetic algorithm aimed at multimodal optimization,” Adv. Eng. Software 33(4), 207–213 (2002).

[CrossRef]

V. Sudhakar Prasad, P. Panca, R. J. Plemmons, T. C. Torgersen, and J. van der Gracht, “Pupil-phase optimization for extended-focus, aberration-corrected imaging systems,” Proc. SPIE 5559, 335–345 (2004).

[CrossRef]

S. Bagheri, P. E. X. Silveira, and D. Pucci de Farias, “Analytical optimal solution of the extension of the depth of field using cubic phase Wavefront Coding,” J. Opt. Soc. Am. 25(5), 1051–1063 (2008).

[CrossRef]

P. Siarry, A. Petrowski, and M. Bessaou, “A multipopulation genetic algorithm aimed at multimodal optimization,” Adv. Eng. Software 33(4), 207–213 (2002).

[CrossRef]

S. Bagheri, P. E. X. Silveira, and D. Pucci de Farias, “Analytical optimal solution of the extension of the depth of field using cubic phase Wavefront Coding,” J. Opt. Soc. Am. 25(5), 1051–1063 (2008).

[CrossRef]

V. Sudhakar Prasad, P. Panca, R. J. Plemmons, T. C. Torgersen, and J. van der Gracht, “Pupil-phase optimization for extended-focus, aberration-corrected imaging systems,” Proc. SPIE 5559, 335–345 (2004).

[CrossRef]

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[CrossRef]
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V. Sudhakar Prasad, P. Panca, R. J. Plemmons, T. C. Torgersen, and J. van der Gracht, “Pupil-phase optimization for extended-focus, aberration-corrected imaging systems,” Proc. SPIE 5559, 335–345 (2004).

[CrossRef]

V. Sudhakar Prasad, P. Panca, R. J. Plemmons, T. C. Torgersen, and J. van der Gracht, “Pupil-phase optimization for extended-focus, aberration-corrected imaging systems,” Proc. SPIE 5559, 335–345 (2004).

[CrossRef]

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[CrossRef]
[PubMed]

F. Yan, Z. Li-gong, and Z. Xue-jun, “Image Restoration of an Off-axis Three mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(1), 0170081–0170088 (2008).

F. Yan, Z. Li-gong, and Z. Xue-jun, “A Design of Off-axis Three Mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(6), 063001 (2008).

[CrossRef]

F. Yan, Z. Li-gong, and Z. Xue-jun, “Image Restoration of an Off-axis Three mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(1), 0170081–0170088 (2008).

F. Yan, Z. Li-gong, and Z. Xue-jun, “A Design of Off-axis Three Mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(6), 063001 (2008).

[CrossRef]

Z. Ting-yu, W.-Z. Zhang, Z. Ye, and F.-H. Yu, “Design of wavefront coding system based on evaluation function of fisher information,” Acta Opt. Sin. 27(6), 1096–1101 (2007) (in Chinese).

Z. Ting-yu, W.-Z. Zhang, Z. Ye, and F.-H. Yu, “Design of wavefront coding system based on evaluation function of fisher information,” Acta Opt. Sin. 27(6), 1096–1101 (2007) (in Chinese).

Z. Ting-yu, W.-Z. Zhang, Z. Ye, and F.-H. Yu, “Design of wavefront coding system based on evaluation function of fisher information,” Acta Opt. Sin. 27(6), 1096–1101 (2007) (in Chinese).

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

Z. Ting-yu, W.-Z. Zhang, Z. Ye, and F.-H. Yu, “Design of wavefront coding system based on evaluation function of fisher information,” Acta Opt. Sin. 27(6), 1096–1101 (2007) (in Chinese).

P. Siarry, A. Petrowski, and M. Bessaou, “A multipopulation genetic algorithm aimed at multimodal optimization,” Adv. Eng. Software 33(4), 207–213 (2002).

[CrossRef]

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[CrossRef]
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J. Ojeda-Castañeda, J. E. Landgrave, and C. M. Gómez-Sarabia, “Conjugate phase plate use in analysis of the frequency response of imaging systems designed for extended depth of field,” Appl. Opt. 47(22), E99–E105 (2008).

[CrossRef]
[PubMed]

D. C. van Leijenhorst, C. B. Lucasius, and J. M. Thijssen, “Optical design with the aid of a genetic algorithm,” Biosystems 37(3), 177–187 (1996).

[CrossRef]
[PubMed]

S. Mezouari, G. Muyo, and A. R. Harvey, “Circular symmetric phase filters for control of primary third-order aberrations:coma and astigmatism,” J.Opt.Soc.Am.A 23, 1058–1062 (2006).

S. Bagheri, P. E. X. Silveira, and D. Pucci de Farias, “Analytical optimal solution of the extension of the depth of field using cubic phase Wavefront Coding,” J. Opt. Soc. Am. 25(5), 1051–1063 (2008).

[CrossRef]

K. H. Brenner, A. W. Lohmann, and J. Ojeda-Castaneda, “The ambiguity function as a polar display of the OTF,” Opt. Commun. 44(5), 323–326 (1983).

[CrossRef]

F. Yan, Z. Li-gong, and Z. Xue-jun, “Image Restoration of an Off-axis Three mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(1), 0170081–0170088 (2008).

F. Yan, Z. Li-gong, and Z. Xue-jun, “A Design of Off-axis Three Mirror Anastigmatic Optical System with Wavefront Coding Technology,” Opt. Eng. 47(6), 063001 (2008).

[CrossRef]

L. Guang-zhi, X. Zhang, Z. Jian-pin, Y. Hao-ming, H. Feng-yun, and X. Zhang, “Novel optimization method for wavefront coding system,” Opt.Precision Eng. 16(7), 1171–1176 (2008) (in Chinese).

V. Sudhakar Prasad, P. Panca, R. J. Plemmons, T. C. Torgersen, and J. van der Gracht, “Pupil-phase optimization for extended-focus, aberration-corrected imaging systems,” Proc. SPIE 5559, 335–345 (2004).

[CrossRef]

S. Mezoouari and A. R. Harvey, “Wavefront coding for aberration compensation in thermal imaging systems,” Proc. SPIE 4442, 34–42 (2001).

[CrossRef]

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