Correction of birefringence in cubic crystalline optical...

Optical: systems and elements – Optical modulator – Light wave temporal modulation

Reexamination Certificate

Rate now

  [ 0.00 ] – not rated yet Voters 0   Comments 0

Details

C359S490020, C359S490020

Reexamination Certificate

active

06917458

ABSTRACT:
An optical system includes multiple cubic crystalline optical elements aligned along a common optical axis and having their crystal lattices oriented with respect to each other to minimize the effects of intrinsic birefringence and produce a system with reduced retardance. The optical system may be a refractive or catadioptric system having a high numerical aperture and using light with a wavelength at or below 248 nanometers. The net retardance of the system is less than the sum of the retardance contributions of the respective optical elements as the elements are oriented such that the intrinsic birefringences of the individual elements cancel each other out. In one embodiment, two [110] cubic crystalline optical elements are clocked with respect to one another and used in conjunction with a [100] cubic crystalline optical element to reduce retardance. Various birefringent elements, wave plates, and combinations thereof provide additional correction for residual retardance and wavefront aberrations. The optical system may be used in a photolithography tool to pattern substrates such as semiconductor substrates and thereby produce semiconductor devices.

REFERENCES:
patent: 3758201 (1973-09-01), MacNeille
patent: 4239329 (1980-12-01), Matsumoto
patent: 4534649 (1985-08-01), Downs
patent: 4576479 (1986-03-01), Downs
patent: 5033830 (1991-07-01), Jameson
patent: 5410375 (1995-04-01), Fiala
patent: 5537260 (1996-07-01), Williamson
patent: 6081382 (2000-06-01), Omura
patent: 6084708 (2000-07-01), Schuster
patent: 6137626 (2000-10-01), Takaoka
patent: 6172380 (2001-01-01), Noguchi et al.
patent: 6195213 (2001-02-01), Omura et al.
patent: 6201634 (2001-03-01), Sakuma et al.
patent: 6252712 (2001-06-01), Füurter et al.
patent: 6259508 (2001-07-01), Shigematsu
patent: 6324003 (2001-11-01), Martin
patent: 6366404 (2002-04-01), Hiraiwa et al.
patent: 6411384 (2002-06-01), Sakuma et al.
patent: 6417974 (2002-07-01), Schuster
patent: 6455862 (2002-09-01), van der Veen et al.
patent: 6583931 (2003-06-01), Hiraiwa et al.
patent: 6672109 (2004-01-01), Hiraiwa
patent: 6683710 (2004-01-01), Hoffman et al.
patent: 6683729 (2004-01-01), Schuster
patent: 6697199 (2004-02-01), Gerhard et al.
patent: 6728043 (2004-04-01), Gruner et al.
patent: 6775063 (2004-08-01), Shiraishi
patent: 2001/0026006 (2001-10-01), Noble et al.
patent: 2002/0085176 (2002-07-01), Hiraiwa et al.
patent: 2002/0149855 (2002-10-01), Schuster
patent: 2002/0186355 (2002-12-01), Omura
patent: 2003/0000453 (2003-01-01), Unno et al.
patent: 2003/0007253 (2003-01-01), Schuster et al.
patent: 2003/0011893 (2003-01-01), Shiraishi et al.
patent: 2003/0012724 (2003-01-01), Burnett et al.
patent: 2003/0021026 (2003-01-01), Allan et al.
patent: 2003/0025894 (2003-02-01), Owa et al.
patent: 2003/0053036 (2003-03-01), Fujishima et al.
patent: 2003/0058421 (2003-03-01), Omura et al.
patent: 2003/0063393 (2003-04-01), Omura
patent: 2003/0067679 (2003-04-01), Allan et al.
patent: 2003/0086071 (2003-05-01), McGuire, Jr.
patent: 2003/0086156 (2003-05-01), McGuire, Jr.
patent: 2003/0086157 (2003-05-01), McGuire Jr.
patent: 2003/0086171 (2003-05-01), Mc Guire
patent: 2003/0089299 (2003-05-01), Obara et al.
patent: 2003/0091934 (2003-05-01), Allan et al.
patent: 2003/0112501 (2003-06-01), Sakuma
patent: 2003/0128349 (2003-07-01), Unno
patent: 2003/0147061 (2003-08-01), Omura
patent: 2003/0168597 (2003-09-01), Webb et al.
patent: 2003/0197946 (2003-10-01), Omura
patent: 2003/0234981 (2003-12-01), Hoffman et al.
patent: 2004/0001244 (2004-01-01), Schuster
patent: 2004/0004757 (2004-01-01), Schuster
patent: 2004/0004771 (2004-01-01), Omura
patent: 2004/0005266 (2004-01-01), Sakuma et al.
patent: 2004/0036961 (2004-02-01), McGuiire Jr.
patent: 2004/0036971 (2004-02-01), McGuire Jr.
patent: 2004/0036985 (2004-02-01), McGuire Jr.
patent: 2004/0105170 (2004-06-01), Krahmer et al.
patent: 2004/0136084 (2004-07-01), Unno
patent: 101 23 725 (2002-11-01), None
patent: 101 23 727 (2002-11-01), None
patent: 101 27 320 (2002-12-01), None
patent: 101 25 487 (2003-01-01), None
patent: 102 10 782 (2003-10-01), None
patent: 0 828 172 (1998-03-01), None
patent: 1 063 684 (2000-12-01), None
patent: 1 115 019 (2001-07-01), None
patent: 1 115 019 (2001-07-01), None
patent: 1139138 (2001-10-01), None
patent: 2000-331927 (2000-11-01), None
patent: 2002-302628 (2002-10-01), None
patent: WO 02/097508 (2002-12-01), None
patent: 2003050349 (2003-02-01), None
patent: WO 01/01182 (2001-01-01), None
patent: WO 02/093209 (2002-11-01), None
patent: WO 02/093209 (2002-11-01), None
patent: WO 02/093257 (2002-11-01), None
patent: WO 02/099500 (2002-12-01), None
patent: WO 03/001271 (2003-01-01), None
patent: WO 03/003429 (2003-01-01), None
patent: WO 03/007046 (2003-01-01), None
patent: WO 03/009021 (2003-01-01), None
patent: WO 03/009050 (2003-01-01), None
patent: WO 03/009062 (2003-01-01), None
patent: WO 03/046634 (2003-06-01), None
patent: WO 03/077007 (2003-09-01), None
patent: WO 03/077011 (2003-09-01), None
patent: WO 03/088330 (2003-10-01), None
patent: WO 04/008254 (2004-01-01), None
Yeh, et al., “Optics of Liquid Crystal Displays”, John Wiley & and Sons, Inc., 1999, pp. 380-385.
Burnett, et al., “Intrinsic birefringence in calcium fluoride and barium fluoride”, Physical Review B, vol. 64, May 14, 2001, pp. 241102-1-241102-4.
Burnett, et al., “Intrinsic Birefringence in 157 nm Materials”, Proceedings of the International Symposium on 157NM Lithography, Dana Point, CA, May 15, 2001, XP002218849, pp. 1-13.
Burnett, et al., “Intrinsic Birefringence in Calcium Fluoride”, preprinted handed out at 2ndInternational Symposium on 157NM Lithography, Dana Point, CA, May 15, 2001, XP002232195, pp. 1-17.
Burnett, et al., “Alternative Materials Development (LITJ216) Final Report—Stress Birefringence, Intrinsic Birefringence, and Index Properties of 157 nm Refractive Materials”, International SEMATECH, Feb. 28, 2002, 33 pages.
J. Dyson, “Unit magnification optical system without Seidel aberrations,”J. Opt. Soc. Am., vol. 49, 1959, p. 713 as described by R. Kingslake, “Lens Design Fundamentals,” Institute of Optics, University of Rochester, Academic Press, Inc., 1978, pp. 320-321.
U.S. Provisional patent application 60/306,206 filed Jul. 18, 2001 (priority document for WO 03/009050 A1, previously provided).
Rudolf Kingslake,Lens Design Fundamentals, 1978, pp. 320-321, Academic Press, Inc., San Diego, California.
U.S. Provisional patent application 60/308,844 filed Aug. 1, 2001, (Japanese Language).
English translation of Provisional Application No. 60/308,844 filed Aug. 1, 2001 (filed in USPTO on Oct. 23, 2002).
Burnett, et al., “Intrinsic Birefringence in 157 nm Materials,”Proc. 2nd, Intl. Symp on 157 nm Lithography, 2001, pp. 1-13, International SEMATECH, Austin, Texas.
Krähmer, D., “Intrinsic Birefringence in CaF2” at CaF2Birefringence Workshop, Intl. SEMATECH, Jul. 18, 2001, pp. 1-9.
Morton, et al., “Testing Optical Damage for 157 nm Lithography,”Semiconductor International, http://www.e-insite.net/semiconductor/index.asp?layout=article&stt (Feb. 2002).
Hand, A., “157 nm Optics Demand a Bag of Tricks,” Semiconductor International, http://www.e-insite.net/semiconductor/index.asp?layout=article&stt (Feb. 2002).
Shiraishi, N., et al., “Current Status of Nikon's Investigation on CaF2Intrinsic Birefringence,” International-SEMATECH Calcium Fluoride Birefringence Workshop, Jul. 18, 2001, pp. 1-15.
Burnett, et al., “Intrinsic Birefringence in Calcium Fluoride,” National Institute of Standards and Technology, Gaithersburg, Maryland 20899, submitted for publication to Physical Review Letters (May 11, 2001), pp. 1-12.
Burnett, et al., “Minimizing spatial-dispersion-induced birefringence in crystals for precision optics by using mixed crystals of materials with t opposite sign of the birefringence,” National Institute of Standards and Technology, Gaithersburg, Maryland 20

LandOfFree

Say what you really think

Search LandOfFree.com for the USA inventors and patents. Rate them and share your experience with other people.

Rating

Correction of birefringence in cubic crystalline optical... does not yet have a rating. At this time, there are no reviews or comments for this patent.

If you have personal experience with Correction of birefringence in cubic crystalline optical..., we encourage you to share that experience with our LandOfFree.com community. Your opinion is very important and Correction of birefringence in cubic crystalline optical... will most certainly appreciate the feedback.

Rate now

     

Profile ID: LFUS-PAI-O-3395522

  Search
All data on this website is collected from public sources. Our data reflects the most accurate information available at the time of publication.