Lucien Mandeng Mandeng | Physics | Best Researcher Award

Dr. Lucien Mandeng Mandeng | Physics | Best Researcher Award

National Advanced School of Engineering of Yaounde | France

Dr. Lucien Mandeng Mandeng is a distinguished Cameroonian physicist and senior lecturer at the National Advanced School of Engineering of Yaoundé (NASEY), University of Yaoundé I. He holds a Ph.D. in Physics from the University of Yaoundé I, awarded in 2015, and a Master’s degree in Information Systems and Mobile Computing from the University of Picardie Jules Verne (France). His academic foundation is deeply rooted in both theoretical and applied physics, with additional qualifications in teacher education and advanced studies in physics. Dr. Mandeng’s teaching and research career spans over a decade, combining academic instruction with scientific investigation in optics, photonics, and nonlinear dynamics. His research focuses on the generation, propagation, and stability of Airy pulses and beams in nonlinear optical media, contributing to the advancement of supercontinuum generation and optical communication systems. He has supervised numerous master’s theses and currently mentors doctoral research on coherent and super-flat supercontinuum generation in nonlinear waveguides. Before his tenure as a university lecturer, Dr. Mandeng served as a teacher of physics, chemistry, and technology in various bilingual and government high schools across Cameroon, fostering a strong link between foundational education and advanced scientific research. His academic engagements reflect a commitment to innovation, mentorship, and the integration of computational and experimental approaches in modern physics. Dr. Mandeng continues to contribute actively to the academic and research community through scholarly publications and supervision of emerging scientists.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

  • Mandeng Mandeng, L., & Tchawoua, C. (2013). Impact of input profile, absorption coefficients, and chirp on modulational instability of femtosecond pulses in silicon waveguides under fourth-order dispersion. Journal of the Optical Society of America B, 30(5), 1382–1391.

  • Diouf, M., Mandeng Mandeng, L., Tchawoua, C., & Zghal, M. (2019). Numerical investigation of supercontinuum generation through AsSe₂/As₂S₅ chalcogenide photonic crystal fibers and rib structures. IEEE/OSA Journal of Lightwave Technology, 37(22), 5692–5698.

  • Mandeng Mandeng, L., Tchawoua, C., Tagwo, H., Zghal, M., Cherif, R., et al. (2016). Role of the input profile asymmetry and the chirp on the propagation in highly dispersive and nonlinear fibers. Journal of Lightwave Technology, 34(24), 5635–5641.

  • Mandeng Mandeng, L., & Tchawoua, C. (2013). Chirped self-healing Airy pulses compression in silicon waveguides under fourth-order dispersion. Journal of Modern Optics, 60(5), 359–367.

  • Heuteu, C., Boukar Kemedane, S., Mandeng Mandeng, L., & Tchawoua, C. (2021). Supercontinuum generation of truncated Airy pulses in a cubic-quintic AsSe₂/As₂S₅ optical waveguide with rib-like structure. Journal of Optics, 23(9), 095503.*