116
Views
1
CrossRef citations to date
0
Altmetric
Original Articles

Polarization Effects on the Non-Linearity of a Highly Non-Linear Fiber

, , , &
Pages 3-13 | Received 17 Dec 2014, Accepted 17 Dec 2014, Published online: 06 Jul 2015

References

  • Chigusa, Y., Yamamoto, Y., Yokokawa, T., Sasaki, T., Taru, T., Hirano, M., Kakui, M., Onishi, M., and Sasaoka, E. 2005. Low-loss pure-silica-core fibers and their possible impact on transmission systems. Journal of Lightwave Technology 23:3541–3550.
  • International Telecommunication Union. 2006. Optical system design and engineering consideration. ITU-T Recommendation Series G Supplement 39.
  • Ferreira, M. 2011. Nonlinear Effects in Optical Fibers. Hoboken, NJ: John Wiley & Sons.
  • Voguel, E., Weber, M., and Krol, D. 1991. Nonlinear optical phenomena in glass. Physics and Chemistry of Glasses 32:231–254.
  • Stolen, R. H., and Lin, C. 1978. Self-phase modulation in silica optical fibers. Physics Reviews A 17:1448–1453.
  • Chraplyvy, A. R., and Stone, J. 1984. Measurement of crossphase modulation in coherent wavelength-division multiplexing using injection lasers. Electronics Letters 20:996–997.
  • Stolen, R. H., Bjorkhholm, J. E., and Ashkin, A. 1974. Measurement of cross-phase modulation in coherent wavelength-division multiplexing using injection lasers. Applied Physics Letters 24:308–310.
  • Ippen, I. P., and Stolen, R. H. 1972. Stimulated Brillouin scattering in optical fibers. Applied Physics Letters 21:539–541.
  • Stolen, R. H., Ippen, E. P., and Tynes, A. R. 1972. Raman oscillation in glass optical waveguide. Applied Physics Letters 20:62–64.
  • Hasegawa, A., and Kodama, Y. 1995. Solitons in Optical Communications. Oxford, UK: Oxford University Press.
  • Hasegawa, A. (Ed.). 1998. New Trends in Optical Soliton Transmission Systems. Dordrecht, Holland: Kluwer.
  • Mollenauer, L., and Gordon, J. 2006. Solitons in Optical Fibers—Fundamentals and Applications. San Diego, CA: Elsevier Academic Press.
  • Dudley, J., and Taylor, J. (Eds). 2010. Supercontinuum Generation in Optical Fibers. Cambridge, UK: Cambridge University Press.
  • Kato, T., Suetsugu, Y., Takagi, M., Sasaoka, E., and Nishimura, M. 1995. Measurement of the nonlinear refractive index in optical fiber by the cross-phase modulation method with depolarized pump light. Optics Letters 20:988–990.
  • Hirano, M., Nakanishi, T., Okuno, T., and Onishi, M. 2009. Silica-based highly nonlinear fibers and their application. Journal of Selected Topics in Quantum Electronics 15:103–113.
  • Okuno, T., Hirano, M., Kato, T., Shigemats, M., and Onishi, M. 2003. Highly nonlinear and perfectly-dispersion flattened fibers for efficient optical signal processing applications. Electronics Letters 39:972–974.
  • Nakajima, K., and Ohashi, M. 2002. Dopant dependence of effective nonlinear refractive index in GeO2- and F-doped core single-mode fibers. IEEE Photonics Technology Letters 14:492–494.
  • Stolen, R. H., Reed, W. A., Kim, K. S., and Harvey, G. T. 1998. Measurement of the nonlinear refractive index of long dispersion-shifted fibers by self-phase modulation at 1.55 μm. Journal of Lightwave Technology 16:1006–1012.
  • Prigent, L., and Hamaide, J. P. 1993. Measurement of fiber nonlinear Kerr coefficient by four-wave mixing. IEEE Photonics Letters 5:1092–1095.
  • Wai, P. K., Menyuk, C. R., and Chen, H. H. 1991. Stability of solitons in randomly varying birefringent fibers. Optics Letters 16:1231–1233.
  • Matsumoto, M., Akagi, Y., and Hasegawa, A. 1997. Propagation of solitons in fibers with randomly varying birefringence: Effects of soliton transmission control. Journal of Lightwave Technology 15:584–589.
  • Lin, Q., and Agrawal, G. P. 2003. Impact of polarization-mode dispersion on measurements of zero-dispersion wavelength through four-wave mixing. IEEE Photonics Technology Letters 15:1719–1721.
  • Hasegawa, A. 2004. Effect of polarization-mode dispersion in optical soliton transmission in fibers. Physica D 188:241–246.
  • Lin, Q., and Agrawal, G. P. 2004. Impact of polarization mode dispersion on fiber-based parametric amplification and wavelength conversion. Optics Letters 29:1114–1116.
  • Ferreira, M. 2008. Soliton transmission in fibers with polarization-mode dispersion. Fiber and Integrated Optics 27:113–126.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.