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Ultrafast optical switching for polyarylates with allylic groups by Nd:YAG Sagnac interferometer

Wybrane pełne teksty z tego czasopisma
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Języki publikacji
EN
Abstrakty
EN
In this paper, an ultrafast optical switching for thin polymer films (polyarylans with allylic groups) is presented. It was realized using the Nd:YAG Sagnac interferometer. Investigated polymers appeared to be suitable candidates for elements of integrated optical telecommunication systems.
Czasopismo
Rocznik
Strony
381--387
Opis fizyczny
Bibliogr. 12 poz.,
Twórcy
autor
autor
autor
autor
autor
  • Univ. of Technology, ul. Koszykowa 75, 00-662 Warszawa, Poland
Bibliografia
  • [1] OSELLAME R., RAMPONI R., MARANGONI M., TARTARINI G., BASSI P., Integrated all-optical nonlinear device for reconfigurable add/drop and wavelength shifting of WDM signals, Applied Physics B: Lasers and Optics B73(5–6), 2001, pp. 505–9.
  • [2] GABRIEL M.C., WHITAKER N.A., DIRK C.W., KUZYK M.G., THAKUR M., Measurement of ultrafast optical nonlinearities using a modified Sagnac interferometer, Optics Letters 16(17), 1991, pp. 1334–6.
  • [3] KUZYK M.G., GARVEY D.W., VIGIL S.R., WELKER D.J., All-optical devices in polymer optical fiber, Chemical Physics 245(1-3), 1999, pp. 533–44.
  • [4] BLOW K.J., MANNING R.J., POUSTIE A.J., Nonlinear optical loop mirrors with feedback and a slow nonlinearity, Optics Communications 134(1–6), 1997, pp. 43–8.
  • [5] HEEBNER J.E., BOYD R.W., Enhanced all-optical switching by use of a nonlinear fiber ring resonator, Optics Letters 24(12), 1999, pp. 847–9.
  • [6] ROBITAILLE L., CALLENDER C.L., NOAD J.P., GOUIN F., ALMEIDA C.A., Integration of optoelectronic switch matrices using metal-semiconductor-metal protectors and polyimide waveguide circuitry, Optical Engineering 37(4), 1998, pp. 1157–63.
  • [7] LEE J.-H., YANG C.C., SHIH M.C., CHUANG T.J., All-optical switching with pulsed signals in an all semiconductor-optical-amplifier loop device, Optics Communications 185(4–6), 2000, pp. 393–7.
  • [8] DIEZ S., HILLIGER E., KORH M., SCHMIDT C., SCHUBERT C., WEBER H.G., OCCHI L., SCHARES L., GUEKOS G., OXENLOEWE L.K., Optimization of SOA-based Sagnac-interferometer switches for demultiplexing to 10 and 40 Gb/s, Optics Communications 189(4–6), 2001, pp. 241–9.
  • [9] KAJZAR F., LEE K.-S., JEN A.A.-K., Polymeric materials and their orientation techniques for second-order nonlinear optics, Advances in Polymer Science 161, 2003, pp. 13–37.
  • [10] DALTON L.R., Rational design of organic electric-optic materials, Journal of Physics: Condensed Matter 15(20), 2003, pp. R897–934.
  • [11] ZADROŻNA I., WYSZOMIERSKA A., Synthesis of polyarylates with allylic side groups. Part 4. Polyarylates based on chalcones, Polymers and Polymer Composites 8, 1998, pp. 541–9.
  • [12] PURA B., OSUCH K., ZADROŻNA I., PIRAMIDOWICZ R., WIERZBICKI M., RATUSZNIK G. J., CIOŁEK, R., SWIŁŁO R., Determination of ultra fast optical nonlinearity of polyarylans with allylic groups by Sagnac interferometer, Molecular Physics Reports 39, 2004, pp. 223–7.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0002-0080
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