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2. "Vector Aberration Theory and the Design of Off-Axis Systems," SPIE, Vol. 554, p. 76, 1985. l
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3. "Aberrations of Optical Systems with Large Tilts and Decentrations," SPIE, Vol. 399, p. 272, 1983. n~Szf
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4. Paraxial and Aberration Analysis of Off-Axial Optical Systems QMk+RM8U
Journal Optical Review ACV ek
Publisher The Optical Society of Japan, co-published with Springer-Verlag GmbH qd!#t]
ISSN 1340-6000 (Print) 1349-9432 (Online) ?A7Yk4Y.?N
Subject Engineering and Physics and Astronomy q2_`v5t
Issue Volume 12, Number 3 / May, 2005 0]x;n+G[q
DOI 10.1007/s10043-005-0219-3 >Jm"2U}lZW
Pages 219-222 TRKgBK$,
SpringerLink Date Friday, June 03, 2005 '5};M)w
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5. Optimization of an unobscured optical system using vector aberration theory `ycU-m==
SPIE Proceedings. Volume 679, 1986, p. 21-24. Y5-kj,CB
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6.Vector aberration theory on a spreadsheet: analysis of tilted and decentered systems w}M3x^9@
Proc. SPIE Vol. 1752, p. 184-195, Current Developments in Optical Design and Optical Engineering II, Robert E. Fischer; Warren J. Smith; Eds.
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7. Kevin Thompson.Practical methods for the optical design of systems without symmetry.SPIE,1996,2774:2~7 kd;'}x=5yP
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8.Rogers J R. Design techniques for systems containing tilted components. SPIE,1999,3737:286~300 H2Eb\v`#
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9. Figoski J W. Aberration characteristics of nonsymmetric systems. SPIE,1985,554: 104~111