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Results: 1 to 20 of 101

1.

Design of an efficient Fresnel-type lens utilizing double total internal reflection for solar energy collection.

Wallhead I, Jiménez TM, Ortiz JV, Toledo IG, Toledo CG.

Opt Express. 2012 Nov 5;20 Suppl 6:A1005-10. doi: 10.1364/OE.20.0A1005.

PMID:
23187651
[PubMed]
2.

Design of an efficient Fresnel-type lens utilizing double total internal reflection for solar energy collection.

Wallhead I, Jiménez TM, Ortiz JV, Toledo IG, Toledo CG.

Opt Express. 2012 Nov 5;20(23):A1005-10.

PMID:
23326849
[PubMed]
3.

Design and testing of a uniformly solar energy TIR-R concentration lenses for HCPV systems.

Shen SC, Chang SJ, Yeh CY, Teng PC.

Opt Express. 2013 Nov 4;21 Suppl 6:A942-52. doi: 10.1364/OE.21.00A942.

PMID:
24514935
[PubMed]
4.

Highly efficient solar-pumped Nd:YAG laser.

Liang D, Almeida J.

Opt Express. 2011 Dec 19;19(27):26399-405. doi: 10.1364/OE.19.026399.

PMID:
22274224
[PubMed - indexed for MEDLINE]
5.

Reflection micro-Fresnel lenses and their use in an integrated focus sensor.

Shiono T, Kitagawa M, Setsune K, Mitsuyu T.

Appl Opt. 1989 Aug 15;28(16):3434-42. doi: 10.1364/AO.28.003434.

PMID:
20555718
[PubMed]
6.
7.

Light-trapping lenses for solar cells.

Davies PA.

Appl Opt. 1992 Oct 1;31(28):6021-6. doi: 10.1364/AO.31.006021.

PMID:
20733804
[PubMed]
8.

Wavelength-independent integrated focus sensor using a reflection twin micro-Fresnel lens.

Shiono T, Setsune K.

Appl Opt. 1989 Dec 1;28(23):5115-21. doi: 10.1364/AO.28.005115.

PMID:
20556009
[PubMed]
9.

On the feasibility of large-aperture Fresnel lenses for the microfocusing of hard X-rays.

Jark W, Pérennès F, Matteucci M.

J Synchrotron Radiat. 2006 May;13(Pt 3):239-52. Epub 2006 Apr 13.

PMID:
16645250
[PubMed]
10.

Solar concentrator modules with silicone-onglass Fresnel lens panels and multijunction cells.

Rumyantsev VD.

Opt Express. 2010 Apr 26;18(9):A17-24.

PMID:
20607883
[PubMed]
11.

Solar concentrator modules with silicone-on-glass Fresnel lens panels and multijunction cells.

Rumyantsev VD.

Opt Express. 2010 Apr 26;18 Suppl 1:A17-24. doi: 10.1364/OE.18.000A17.

PMID:
20588569
[PubMed]
12.

Highly concentrating Fresnel lenses.

Kritchman EM, Friesem AA, Yekutieli G.

Appl Opt. 1979 Aug 1;18(15):2688-95. doi: 10.1364/AO.18.002688.

PMID:
20212729
[PubMed]
13.

Fresnel lens to concentrate solar energy for the photocatalytic decoloration and mineralization of orange II in aqueous solution.

Monteagudo JM, Durán A.

Chemosphere. 2006 Nov;65(7):1242-8. Epub 2006 Jun 9.

PMID:
16762397
[PubMed - indexed for MEDLINE]
14.

Confocal total-internal-reflection fluorescence microscopy with a high-aperture parabolic mirror lens.

Ruckstuhl T, Seeger S.

Appl Opt. 2003 Jun 1;42(16):3277-83.

PMID:
12790480
[PubMed]
15.

Elimination of flux loss by optimizing the groove angle in modified Fresnel lens to increase illuminance uniformity, color uniformity and flux efficiency in LED illumination.

Kim B, Choi M, Kim H, Lim J, Kang S.

Opt Express. 2009 Sep 28;17(20):17916-27. doi: 10.1364/OE.17.017916.

PMID:
19907580
[PubMed - indexed for MEDLINE]
16.

Stationary nonimaging lenses for solar concentration.

Kotsidas P, Chatzi E, Modi V.

Appl Opt. 2010 Sep 20;49(27):5183-91. doi: 10.1364/AO.49.005183.

PMID:
20856295
[PubMed]
17.

Graded-index Fresnel lenses for integrated optics.

Suhara T, Kobayashi K, Nishihara H, Koyama J.

Appl Opt. 1982 Jun 1;21(11):1966-71. doi: 10.1364/AO.21.001966.

PMID:
20389979
[PubMed]
18.

Highly efficient broadband double-sided Fresnel lens for THz range.

Sypek M, Makowski M, Hérault E, Siemion A, Siemion A, Suszek J, Garet F, Coutaz JL.

Opt Lett. 2012 Jun 15;37(12):2214-6. doi: 10.1364/OL.37.002214.

PMID:
22739859
[PubMed]
19.

Solar-pumped 80 W laser irradiated by a Fresnel lens.

Ohkubo T, Yabe T, Yoshida K, Uchida S, Funatsu T, Bagheri B, Oishi T, Daito K, Ishioka M, Nakayama Y, Yasunaga N, Kido K, Sato Y, Baasandash C, Kato K, Yanagitani T, Okamoto Y.

Opt Lett. 2009 Jan 15;34(2):175-7.

PMID:
19148246
[PubMed]
20.
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