Articles dans des revues avec comité de lecture (189)

  1. 160. Haelterman, M., & Sheppard, A. (1993). Cancelling soliton interaction in single-mode optical fibers. Electronics Letters, 29, 1176-1177.
  2. 161. Haelterman, M., Trillo, S., & Wabnitz, S. (1993). Hopf sideband bifurcation and chaos in fiber lasers with injected signal. Physical review. A, Atomic, Molecular, and Optical Physics, 47, 2344-2353.
  3. 162. De Angelis, C., Wabnitz, S., & Haelterman, M. (1993). Bandwidth limits due to polarisation multiplexed soliton interactions. Electronics Letters, 29(17), 1568-1570.
  4. 163. Haelterman, M., & Emplit, P. (1993). Optical dark soliton trains generated by passive spectral filtering technique. Electronics Letters, 29(4), 356-357. doi:10.1049/el:19930240
  5. 164. Chazan, P., Haelterman, M., & Tedjini, S. (1992). Influence of optical dispersion on the performances of an electrooptic phase modulator. IEEE microwave and guided wave letters, 2, 19-21.
  6. 165. Haelterman, M. (1992). Simple model for the study of period-doubling instabilities in the nonlinear ring cavity. Applied physics letters, 61, 2756-2758.
  7. 166. Haelterman, M., Trillo, S., & Wabnitz, S. (1992). Low dimensional modulational chaos in diffractive nonlinear cavities. Optics communications, 93, 343-349.
  8. 167. Haelterman, M. (1992). Period-doubling bifurcations and modulational instability in the nonlinear ring cavity: An analytical study. Optics Letters, 17, 792-794. doi:10.1364/OL.17.000792
  9. 168. Haelterman, M., & Vitrant, G. (1992). Drift instability and spatio-temporal dissipative structures in a nonlinear Fabry-Pérot resonator under oblique incidence. Journal of the Optical Society of America. B, Optical physics, 9, 1563-1570. doi:10.1364/JOSAB.9.001563
  10. 169. Haelterman, M., Trillo, S., & Wabnitz, S. (1992). Dissipative modulational instability in a nonlinear dispersive ring cavity. Optics communications, 91, 401-407.
  11. 170. Haelterman, M., Vitrant, G., & Reinisch, R. (1992). Coupled-mode theory of optical bistability in a locally nonlinear waveguide. Optics communications, 88, 210-217.
  12. 171. Haelterman, M., Trillo, S., & Wabnitz, S. (1992). Additive-modulation-instability ring laser in the normal dispersion regime of a fiber. Optics Letters, 17, 745-747. doi:10.1364/OL.17.000745

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