Thoraya Alharthi | Dynamical Systems | Best Researcher Award

Dr. Thoraya Alharthi | Dynamical Systems | Best Researcher Award

University of Bisha, Saudi Arabia

Dr. Thoraya Namesh Alharthi is an accomplished mathematician with over 11 years of academic and research experience, currently serving as an Assistant Professor at Bisha University, Saudi Arabia. She holds a Ph.D. in Mathematics from the University of Exeter (2023), a Master’s degree with honors from Taif University (2016), and a Bachelor’s degree with honors from King Khalid University (2011). Her research focuses on nonlinear dynamical systems, bifurcation theory, chaotic dynamics, and tipping points in forced systems—areas with significant theoretical and applied relevance. Dr. Alharthi has actively participated in prestigious international conferences across the UK, France, and the USA, presenting her work and engaging with the global research community. She is known for her creativity, commitment to continuous development, and dedication to volunteering. With strong academic credentials, international exposure, and a passion for innovative mathematics, Dr. Alharthi represents a promising researcher making meaningful contributions to the field.

Professional Profile 

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Education

Dr. Thoraya Namesh Alharthi has pursued an exemplary academic journey marked by distinction and dedication to mathematics. She earned her Ph.D. in Mathematics in 2023 from the University of Exeter, United Kingdom, where she deepened her expertise in nonlinear dynamical systems and related fields. Prior to her doctoral studies, she completed her Master’s degree in Mathematics with Excellent with Honors in 2016 at Taif University, Saudi Arabia. Her academic journey began with a Bachelor’s degree in Mathematics from King Khalid University in 2011, where she also graduated with Excellent with Honors. Her consistent academic excellence across all levels reflects her commitment to mastering mathematical theory and its applications. Dr. Alharthi’s education spans both national and international institutions, equipping her with a broad, interdisciplinary, and global perspective that enriches her research and teaching endeavors in the field of mathematics.

Professional Experience

Dr. Alharthi brings over 11 years of professional experience in higher education, holding various academic positions across prominent Saudi institutions. She is currently serving as an Assistant Professor of Mathematics at Bisha University, where she contributes to both teaching and research in advanced mathematical topics. Prior to her current role, she worked as a Lecturer and Teaching Assistant at King Khalid University and later at Bisha University. Her professional trajectory demonstrates a progressive rise through academic ranks, showcasing her ability to balance instructional duties with research activities. She is recognized for her effective teaching methodologies, mentorship, and dedication to student development. In addition to her university roles, Dr. Alharthi has actively participated in workshops and seminars to enhance her academic and pedagogical skills. Her professional experience reflects a deep commitment to mathematics education, continuous learning, and fostering academic excellence in her students and peers alike.

Research Interest

Dr. Thoraya Alharthi’s research interests lie at the forefront of theoretical and applied mathematics. Her primary focus is on nonlinear dynamical systems, with special emphasis on bifurcation theory, chaotic dynamics, and nonautonomous systems. She is particularly interested in the mathematical modeling of real-world phenomena, including tipping points in forced systems, a concept relevant to climate science, ecological transitions, and engineering systems. Dr. Alharthi investigates the behavior of complex systems under various conditions, aiming to uncover the underlying structures and instabilities that lead to qualitative shifts in system dynamics. Her work incorporates both analytical and numerical approaches, demonstrating a balance of theoretical rigor and computational modeling. Through her active participation in international conferences and seminars, she continues to engage with current developments in the global research landscape. Her research contributes meaningfully to understanding critical transitions in nonlinear systems, an area with broad interdisciplinary and practical implications.

Awards and Honors

Throughout her academic career, Dr. Thoraya Alharthi has consistently demonstrated excellence, earning recognition and honors that reflect her outstanding contributions. While specific named awards are not detailed in the provided information, her academic achievements speak volumes—graduating with Excellent with Honors in both her Bachelor’s and Master’s programs highlights her intellectual rigor and commitment. Her successful admission and completion of a Ph.D. program at the University of Exeter, a globally respected institution, further illustrates her exceptional academic capability and research potential. Moreover, her participation in prestigious international conferences, including Dynamics Days (UK, France, USA), BMC-BAMC in Glasgow, and other specialized mathematical workshops, positions her as a globally engaged researcher. These platforms are competitive and academically demanding, signifying peer recognition of her research. Her commitment to professional development, continuous learning, and global academic exchange further underscores her status as a rising scholar in mathematics.

Conclusion

Dr. Thoraya Namesh Alharthi is a dedicated and forward-thinking mathematician with a strong academic foundation, extensive teaching experience, and an active research portfolio. Her work in nonlinear dynamical systems and bifurcation theory holds significance for both pure and applied mathematics. With over a decade of academic service, she has built a reputation for intellectual rigor, collaborative spirit, and a passion for continuous development. Her active engagement in international academic forums enhances the visibility and impact of her work, while her personal values—volunteering, perseverance, and creativity—add depth to her professional identity. Although further documentation of her publications and awards would bolster her academic profile, Dr. Alharthi’s trajectory suggests a promising future. She stands as a strong candidate for recognition through prestigious awards such as the Best Researcher Award, symbolizing the next generation of scholars committed to advancing mathematical knowledge and contributing to global scientific challenges.

Publications Top Notes

  • “Hidden-like Attractors in a Class of Discontinuous Dynamical Systems”

    • Authors: Hany A. Hosham, Mashael A. Aljohani, Eman D. Abou Elela, Nada A. Almuallem, Thoraya N. AlharthiMDPI+1AIMS Press+1

    • Year: 2024MDPI

    • Citation: Hosham, H.A., Aljohani, M.A., Abou Elela, E.D., Almuallem, N.A., & Alharthi, T.N. (2024). Hidden-like Attractors in a Class of Discontinuous Dynamical Systems. Mathematics, 12(23), 3784.MDPI

    • Source: https://www.mdpi.com/2227-7390/12/23/3784

  • “A Class of Discontinuous Systems Exhibit Perturbed Period Doubling Bifurcation”

    • Authors: Hany A. Hosham, Alaa A. Alzulaibani, Tarek Sellami, Khaled Sioud, Thoraya N. AlharthiAIMS Press

    • Year: 2024

    • Citation: Hosham, H.A., Alzulaibani, A.A., Sellami, T., Sioud, K., & Alharthi, T.N. (2024). A Class of Discontinuous Systems Exhibit Perturbed Period Doubling Bifurcation. AIMS Mathematics, 9(9), 25098-25113.

    • Source: https://www.aimspress.com/article/doi/10.3934/math.20241223

  • “Vaccination Strategies in a Stochastic SIVR Epidemic Model”

  • “A Study of Dynamical Features and Novel Soliton Structures of Complex-Coupled Maccari’s System”

    • Authors: N. Abbas, A. Hussain, M. Bakouri, T.N. Alharthi, I. Khan

    • Year: 2025

    • Citation: Abbas, N., Hussain, A., Bakouri, M., Alharthi, T.N., & Khan, I. (2025). A Study of Dynamical Features and Novel Soliton Structures of Complex-Coupled Maccari’s System. AIMS Mathematics, 10(2), 3025-3040.

    • Source: https://www.aimspress.com/article/doi/10.3934/math.2025204

  • “Bifurcation and Chaos in Simple Discontinuous Systems Separated by a Hypersurface”