Bertolotti, M., Monaco, M., and Sibilia, C. (1995). Role of
the asymmetry in a third-order nonlinear directional
coupler. Opt. Comm., 116:405–410.
Cao, H., Atai, J., Shu, X., and Chen, G. (2012). Di-
rect design of high channel-count fiber bragg grat-
ing filters with low index modulation. Opt. Express,
20(11):12095–12110.
Christodoulides, D. N. and Joseph, R. I. (1989). Slow bragg
solitons in nonlinear periodic structures. Phys. Rev.
Lett., 62:1746–1749.
Dasanayaka, S. and Atai, J. (2010). Stability of Bragg grat-
ing solitons in a cubic-quintic nonlinear medium with
dispersive reflectivity. Phys. Lett. A, 375(2):225 – 229.
De Rossi, A., Conti, C., and Trillo, S. (1998). Stability,
multistability, and wobbling of optical gap solitons.
Phys. Rev. Lett., 81:85–88.
de Sterke, C. M., Eggleton, B. J., and Krug, P. A. (1997).
High-intensity pulse propagation in uniform gratings
and grating superstructures. IEEE J. Lightwave Tech-
nol., 15:1494–1502.
de Sterke, C. M. and Sipe, J. E. (1994). Gap solitons. Prog.
Optics, 33:203–260.
Dong, R., R¨uter, C. E., Kip, D., Cuevas, J., Kevrekidis,
P. G., Song, D., and Xu, J. (2011). Dark-bright gap
solitons in coupled-mode one-dimensional saturable
waveguide arrays. Phys. Rev. A, 83:063816.
Eggleton, B. J., de Sterke, C. M., and Slusher, R. E. (1997).
Nonlinear pulse propagation in Bragg gratings. J. Opt.
Soc. Am. B, 14:2980–2993.
Eggleton, B. J., de Sterke, C. M., and Slusher, R. E. (1999).
Bragg solitons in the nonlinear schr¨odinger limit: ex-
periment and theory. J. Opt. Soc. Am. B, 16:587–599.
Eggleton, B. J., Slusher, R. E., Krug, P. A., and Sipe, J. E.
(1996). Bragg grating solitons. Phys. Rev. Lett.,
76:1627–1630.
Kashyap, R. (1999). Fiber bragg gratings. Academic Press,
San Diego; London.
Krug, P. A., Stephens, T., Yoffe, G., Ouellette, F., Hill, P.,
and Dhosi, G. (1995). Dispersion compensation over
270 km at 10 gbit/s using an offset-core chirped fibre
bragg grating. Electron. Lett., 31:1091.
Litchinitser, N. M., Eggleton, B. J., and Patterson, D. B.
(1997). Fiber bragg gratings for dispersion compen-
sation in transmission: theoretical model and design
criteria for nearly ideal pulse recompression. IEEE J.
Lightwave Technol., 15:1303–1313.
Loh, W. H., Laming, R. I., Robinson, N., Cavaciuti, A.,
Vaninetti, F., Anderson, C. J., Zervas, M. N., and Cole,
M. J. (1996). Dispersion compensation over distances
in excess of 500 km for 10-gb/s systems using chirped
fiber gratings. IEEE Photon. Technol. Lett., 24:944–
946.
Mak, W. C. K., Malomed, B. A., and Chu, P. L. (1998).
Solitary waves in coupled nonlinear waveguides with
Bragg gratings. J. Opt. Soc. Am. B, 15:1685–1692.
Malomed, B. A. and Tasgal, R. S. (1994). Vibration modes
of a gap soliton in a nonlinear optical medium. Phys.
Rev. E, 49:5787–5796.
Mandelik, D., Morandotti, R., Aitchison, J. S., and Silber-
berg, Y. (2004). Gap solitons in waveguide arrays.
Phys. Rev. Lett., 92:093904.
Mok, J. T., de Sterke, C. M., Littler, I. C. M., and Eggle-
ton, B. J. (2006). Dispersionless slow light using gap
solitons. Nature Phys., 2:775–780.
Monat, C., de Sterke, M., and Eggleton, B. J. (2010). Slow
light enhanced nonlinear optics in periodic structures.
J. Opt., 12:104003.
Neill, D. R. and Atai, J. (2006). Collision dynamics of gap
solitons in kerr media. Phys. Lett. A, 353:416–421.
Neill, D. R. and Atai, J. (2007). Gap solitons in a hollow
optical fiber in the normal dispersion regime. Phys.
Lett. A, 367:73–82.
Tan, Y., Chen, F., Beliˇcev, P. P., Stepi´c, M., Maluckov, A.,
R¨uter, C. E., and Kip, D. (2009). Gap solitons in de-
focusing lithium niobate binary waveguide arrays fab-
ricated by proton implantation and selective light illu-
mination. Appl. Phys. B, 95:531–535.