Voir la notice de l'article provenant de la source Math-Net.Ru
@article{IZKAB_2015_5_a0, author = {K. A. Bzheumikhov and Z. Ch. Margushev and Yu. V. Savoiskii}, title = {Fiber with negative curvature of the hollow core of polymeric material: production and research of optical properties}, journal = {News of the Kabardin-Balkar scientific center of RAS}, pages = {7--12}, publisher = {mathdoc}, number = {5}, year = {2015}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/IZKAB_2015_5_a0/} }
TY - JOUR AU - K. A. Bzheumikhov AU - Z. Ch. Margushev AU - Yu. V. Savoiskii TI - Fiber with negative curvature of the hollow core of polymeric material: production and research of optical properties JO - News of the Kabardin-Balkar scientific center of RAS PY - 2015 SP - 7 EP - 12 IS - 5 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/IZKAB_2015_5_a0/ LA - ru ID - IZKAB_2015_5_a0 ER -
%0 Journal Article %A K. A. Bzheumikhov %A Z. Ch. Margushev %A Yu. V. Savoiskii %T Fiber with negative curvature of the hollow core of polymeric material: production and research of optical properties %J News of the Kabardin-Balkar scientific center of RAS %D 2015 %P 7-12 %N 5 %I mathdoc %U http://geodesic.mathdoc.fr/item/IZKAB_2015_5_a0/ %G ru %F IZKAB_2015_5_a0
K. A. Bzheumikhov; Z. Ch. Margushev; Yu. V. Savoiskii. Fiber with negative curvature of the hollow core of polymeric material: production and research of optical properties. News of the Kabardin-Balkar scientific center of RAS, no. 5 (2015), pp. 7-12. http://geodesic.mathdoc.fr/item/IZKAB_2015_5_a0/
[1] J. C. Knight, T. A. Birks, P. St.J. Russell, D. M. Atkins, “All-silica single-mode optical fiber with photonic crystal cladding”, Opt. Lett, 21:19 (1996), 1547–1549
[2] A. M. Zheltikov, Mikrostrukturirovannye svetovody v opticheskikh tekhnologiyakh, FIZMATLIT, M., 2009, 192 pp.
[3] A. D. Pryamikov, A. S. Biriukov, A. F. Kosolapov et al, “Demonstration of a waveguide regime for a silica hollow–core microstructured optical fiber with a negative curvature of the core boundary in the spectral region > 3.5m”, Opt. Express, 19:2 (2011), 1441–1448
[4] A. F. Kosolapov, A. D. Pryamikov, A. S. Biriukov et al, “Demonstration of CO2-laser power delivery through chalcogenide-glass fiber with negative-curvature hollow core”, Opt. Express, 19:25 (2011), 25723–25728
[5] F. Yue, Tomm J.W, D. Kruschke, P. Glas, K. A. Bzheumikhov, Z. Ch. Margushev, “Glass as broad-bandwidth near-infrared light source material”, OPTICS EXPRESS, 21:2 (2013), 2287–2296, PbS
[6] M. A. Eijkelenborg, A. Argyros, G. Barton et al., “Recent progress in microstructured polymer optical fibre fabrication and characterization”, Opt. Fiber Technol, 9 (2003), 199–209
[7] A. Argyros, M. A. Eijkelenborg, M. C.J. Large, I. M. Bassett, “Hollow-core microstructured polymer optical fiber”, OPTICS LETTERS, 31:2 (2006), 172–174
[8] A. Argyros, “Microstructures in polymer fibres for optical fibres, THz waveguides, and fibrebased metamaterials”, ISRN Optics, 2013, 1–22
[9] S. Xue, R. Tanner, G. Barton et al, “Fabrication of microstructured optical fibers : Problem formulation and numerical modeling of transient draw process”, Journal of Lightwave Technology, 2005, no. 23(7), 2255–2266
[10] W. Belardi, J. C. Knight, “Hollow antiresonant fibers with reduced attenuation”, Opt. Express, 21:19 (2013), 21912–21917
[11] A. Urich, R. R. J. Maier, F. Yu, J. C. Knight, D. P. Hand, J. D. Shephard, “Flexible delivery of Er:YAG radiation at 2.94m with negative curvature silica glass fibers: A new solution for minimally invasive surgical procedures”, BIOMEDICAL OPTICS EXPRESS, 4:2 (2013), 193–205
[12] K. A. Bzheumikhov, Z. Ch. Margushev, Yu. Savoiskii, “V Analiz temperaturnoi zavisimosti spektralnykh kharakteristik fotonno-kristallicheskikh volokon s poloi serdtsevinoi”, ZhTF, 2013, no. 7, 125–128