1. Kudlinski, A., M. Lelek, B. Barviau, L. Audry, and A. Mussot, "Efficient blue conversion from a 1064 nm microchip laser in long photonic crystal fiber tapers for fluorescence microscopy," Optics Express, Vol. 18, No. 16, 16640, July 2010.
doi:10.1364/oe.18.016640 Google Scholar
2. Moores, J. D., "Nonlinear compression of chirped solitary waves with and without phase modulation," Optics Letters, Vol. 21, No. 8, 555-557, April 1996.
doi:10.1364/ol.21.000555 Google Scholar
3. Varshney, S. K., K. Sasaki, K. Saitoh, and M. Koshiba, "Design and simulation of 1310 nm and 1480 nm single-mode photonic crystal fiber Raman lasers," Optics Express, Vol. 16, No. 2, 549-559, 2008.
doi:10.1364/oe.16.000549 Google Scholar
4. Nguyen, H. C., B. T. Kuhlmey, E. C. Magi, M. J. Steel, P. Domachuk, C. L. Smith, and B. J. Eggleton, "Tapered photonic crystal fibers: Properties, characterization and applications," Appl. Phys. B, Vol. 81, No. 2-3, 377-387, 2005. Google Scholar
5. Raja, V. J., K. Senthilnathan, K. Porsezian, and K. Nakkeeran, "Efficient pulse compression using tapered photonic crystal fiber at 850 nm," IEEE Journal of Quantum Electronics, Vol. 46, No. 12, 1795-1803, December 2010.
doi:10.1109/jqe.2010.2050865 Google Scholar
6. Comsol Multiphysics 3. 4, 2008, Online Available: www.comsol.com. Google Scholar
7. Li, Q., K. Senthilnathan, K. Nakkeeran, and P. K. A. Wai, "Nearly chirp and pedestal-free pulse compression in nonlinear fiber Bragg gratings," J. Opt. Soc. Am. B, Vol. 26, No. 3, 432-443, 2009. Google Scholar
8. Li, F., Q. Li, J. Yuan, and P. K. A. Wai, "Highly coherent supercontinuum generation with picosecond pulses by using self-similar compression," Optics Express, Vol. 22, No. 22, 27339, October 2014.
doi:10.1364/oe.22.027339 Google Scholar