Journal Articles:
I. A. Osinuga & S. O. Yusuff
Quadrature Based Broyden-like Method for Systems of Nonlinear Equations.
Statistics, Optimization & Information Computing, 6 (2018), 130–138.
I. A. Osinuga & S. O. Yusuff
Construction of a Broyden-like Method for Nonlinear Systems of Equations.
Annals of Computer Science Series, XV(2), 2017.
I. A. Osinuga & S. O. Yusuff
A Robust Broyden-like Method for Systems of Nonlinear Equations.
Transactions of the Nigerian Association of Mathematical Physics, 2018.
S. O. Yusuff, I. A. Osinuga, O. J. Adeniran & S. A. Onashoga
Robust Three-Step Broyden-like Algorithms for Functions of Several Variables.
Annals of Computer Science Series, XVII(2), 2019.
Conference Presentations:
CVIM 2017, Praia, Cape Verde
Presentation of research on "Quadrature Based Broyden-like Method for Systems of Nonlinear Equations".
International Conference, University of Ibadan (2017)
Presentation of research on "A Robust Broyden-like Method for Systems of Nonlinear Equations".
Current Research:
Ph.D. Research in Topological Photonics
Auburn University
My doctoral research at Auburn University focuses on the mathematical design and optimization of topological photonic crystals. This work combines semidefinite programming, finite element methods, spectral analysis, and topological characterization to develop photonic structures with large spectral band gaps and robust wave-guiding properties.
Current Research Area include:
Shared spectral band-gap optimization
Topological photonic crystal design
Valley-Hall photonic systems
Topological invariants
Semidefinite programming methods for photonic crystal optimization
Research manuscripts currently under development.
Citation Metrics:
My publications in numerical analysis and nonlinear systems have been cited by researchers working in optimization, scientific computing, and applied mathematics, reflecting the broader impact of these contributions on iterative methods for nonlinear systems.
Research Profiles: