Salim Shekh | Mathematics | Young Scientist Award

Young Scientist Award

Salim Shekh
Assistant Professor, Department of Mathematics
Affiliation S. P. M. Science and Gilani Arts Commerce College
Country India
Scopus ID 56572682400
Documents 75
Citations 1,294
h-index 23
Subject Area Mathematics
Event International Forensic Scientist Awards
ORCID 0000-0003-4545-1975
Salim Shekh
S. P. M. Science and Gilani Arts Commerce College, India

Salim Shekh is an Indian mathematician and researcher affiliated with S. P. M. Science and Gilani Arts Commerce College, India. His research mainly focuses on cosmology, gravitation, dark energy, and modified gravity theories.[1] He has published several research articles in international journals and gained strong citation impact in mathematical physics and cosmology.[2]

Abstract

This article highlights the academic achievements of Salim Shekh in mathematics and cosmology. His work mainly studies modified gravity, dark energy models, and cosmological analysis. His publications and citation record show steady research contributions in theoretical physics and astrophysics.[3]

Keywords

General Relativity; Gravitation; Dark Energy; Cosmology; f(Q) Gravity; Mathematical Physics; Astrophysics.

Introduction

Modern cosmology studies the evolution and structure of the universe using mathematical and physical theories. Salim Shekh has contributed to this field through research on dark energy and modified gravity theories.[4] His work includes theoretical analysis and observational studies related to cosmic acceleration and cosmological models.[5]

Research Profile

Shekh’s research mainly focuses on modified gravity theories, especially f(Q) gravity and dark energy cosmology. His studies discuss anisotropic cosmological models, holographic dark energy, and observational constraints.[6]

He has published papers in journals such as Physics of the Dark Universe, Journal of High Energy Astrophysics, and Classical and Quantum Gravity.[7]

Research Contributions

One of Shekh’s important works is Anisotropic nature of space–time in fQ gravity, which studied cosmological anisotropy in modified gravity.[8] He also worked on cosmic acceleration and energy conditions in symmetric teleparallel gravity models.[9]

His studies on holographic dark energy and observational cosmology have contributed to discussions on accelerated expansion of the universe and alternative gravity theories.[10]

Publications

  • Anisotropic nature of space–time in fQ gravity, 2022.[8]
  • Models of holographic dark energy in f(Q) gravity, 2021.[10]
  • Observational constraints in accelerated emergent f(Q) gravity model, 2023.[11]
  • Modelling the accelerating universe with f(Q) gravity: observational consistency, 2024.[12]

Research Impact

Shekh has received more than 1,294 citations and has an h-index of 23, showing good academic impact in cosmology and mathematical physics.[2] His research is widely referenced in studies related to modified gravity and dark energy models.[12]

Award Suitability

Salim Shekh’s publication record, citation profile, and international collaborations support his suitability for the Young Scientist Award. His research contributions in cosmology and modified gravity theories demonstrate continuous academic involvement and scientific productivity.[8]

Conclusion

Salim Shekh has contributed significantly to research in cosmology, gravitation, and modified gravity theories. His publications, citation impact, and ongoing academic work reflect his active role in theoretical physics and mathematical cosmology.[10]

References

  1. Scopus Author Profile: Salim Harun Shekh.
    https://www.scopus.com/authid/detail.uri?authorId=56572682400
  2. Scopus citation metrics and h-index profile.
  3. Google Scholar profile of Dr. Salim Shekh.
    https://scholar.google.com/citations?hl=en&user=VOJJ1DgAAAAJ
  4. Shekh, S. H. (2021). Models of holographic dark energy in f(Q) gravity.
    https://doi.org/10.1016/j.dark.2021.100850
  5. Late-time acceleration studies in f(Q) gravity.
  6. Research publications on modified gravity and cosmology.
  7. International journals in cosmology and astrophysics.
  8. Koussour, M., Shekh, S. H., & Bennai, M. (2022). Anisotropic nature of space–time in fQ gravity.
    https://doi.org/10.1016/j.dark.2022.101051
  9. Cosmic acceleration and energy conditions in symmetric teleparallel gravity.
  10. Holographic dark energy studies in modified gravity.
  11. Observational constraints in accelerated emergent f(Q) gravity model.
  12. Modelling the accelerating universe with f(Q) gravity.

Yang Liu | Mathematics | Research Excellence Award

Assist. Prof. Dr. Yang Liu | Mathematics | Research Excellence Award

Great Bay University | China

Dr. Yang Liu is a researcher in numerical optimization and scientific computing, with a focus on scalable algorithms for large-scale nonconvex problems. His work integrates numerical linear algebra, tensor methods, and Krylov subspace techniques to advance efficient optimization frameworks. He has contributed to the development of Newton-MR methods, pseudoinverse solution recovery, and adaptive regularization strategies for higher-order tensor models. His research emphasizes matrix-free and high-performance implementations, with contributions incorporated into advanced solver libraries. Dr. Yang Liu actively engages in international collaborations and contributes to peer-reviewed journals and conferences in optimization and applied mathematics.

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View Google Scholar Profile  View ORCID Profile

Featured Publications


Convergence of Newton-MR under inexact Hessian information

– SIAM Journal on Optimization, 2021 | Cited by: 25

Newton-MR: Inexact Newton method with minimum residual sub-problem solver

– EURO Journal on Computational Optimization, 2022 | Cited by: 22

MINRES: From negative curvature detection to monotonicity properties

– SIAM Journal on Optimization, 2022 | Cited by: 14

Descent properties of an Anderson accelerated gradient method with restarting

– SIAM Journal on Optimization, 2024 | Cited by: 11 

Jia Zheng | Mathematics | Best Researcher Award

Dr. Jia Zheng | Mathematics | Best Researcher Award

Wuhan University | China

Dr. Jia Zheng is a dedicated and rising mathematician currently serving as a Postdoctoral Fellow at Wuhan University, China. With a strong foundation in mathematical theories and a focused interest in Fourier Analysis, Dr. Zheng has consistently demonstrated academic excellence and research innovation throughout his journey. His contributions to self-affine tilings, exponential orthogonal functions, and spectral theory of fractal measures position him as a prominent young researcher in pure mathematics.

Professional profile👤

Scopus

Strengths for the Awards✨

Dr. Jia Zheng has shown exceptional promise and achievement in the field of mathematics, particularly within Fourier analysis, real analysis, measure theory, and fractal geometry. With a total of 6 peer-reviewed journal publications (including reputed journals such as Banach Journal of Mathematical Analysis, Bulletin of the Malaysian Mathematical Sciences Society, and Journal of Geometric Analysis), and 3 preprints, Dr. Zheng has made substantial contributions to the understanding of spectrality, tiling theory, and self-affine structures. His ability to collaborate across projects, evident in multiple co-authored works, demonstrates both depth and breadth of research competence.

🎓 Education

Dr. Zheng began his academic journey with a B.Sc. in Mathematics and Applied Mathematics from Gannan Normal University (2013–2017). He further deepened his mathematical foundation by pursuing an M.Sc. at Hunan Normal University (2017–2020), supported by the Hunan Provincial Innovation Foundation. His Ph.D., completed at Central China Normal University (2020–2024) under the supervision of Prof. Xiaoye Fu, focused on advanced areas like Fourier Analysis, Measure Theory, and Frame Theory. In August 2024, he commenced his postdoctoral research at Wuhan University, mentored by Prof. Lingmin Liao, concentrating on Fourier Analysis in p-adic fields.

💼 Experience

Dr. Zheng has participated in several impactful academic projects, including his postgraduate research on the spectrality of fractal measures, which resulted in two peer-reviewed papers. As a Teaching Assistant at CCNU (2021–2022), he significantly improved student performance and engagement in real-variable theory courses. His work extended beyond teaching, involving curriculum refinement and in-depth tutorial sessions. His academic involvement is also evident through participation in numerous national and international conferences.

🔬 Research Interests On Mathematics

Dr. Zheng’s primary research interests lie in Fourier Analysis, Real Analysis, and the spectral theory of fractals and self-affine measures. He has extensively worked on orthogonal exponential families, tiling, and wavelet sets in various mathematical structures such as Cantor sets and Sierpinski gaskets. His passion for pure mathematics and fractal geometry drives his continuous exploration into complex mathematical phenomena.

🏆 Awards and Honors

Dr. Zheng’s excellence has been recognized through multiple accolades. He received the Second-Class Scholarship at Central China Normal University (2020–2024) and First-Class Scholarship at Hunan Normal University (2017–2020). He also earned honors in national-level competitions, including a Third Prize in the “Huawei Cup” and an Honorable Mention in the Interdisciplinary Contest in Modeling. His undergraduate years were marked by leadership and academic distinction at Gannan Normal University.

📚 Publications

Dr. Zheng has contributed to several peer-reviewed journals, with notable citations:

  1. Matrices over finite fields applied in exponential orthogonal family
    Banach Journal of Mathematical Analysis, 19, 44 (2025). Cited by 1+ articles

  2. Spectrality of a class of Cantor-dust type self-affine tiles
    Bulletin of the Malaysian Mathematical Sciences Society, 48, 98 (2025). Cited by 1+ articles

  3. Tiling and spectrality for generalized Sierpinski self-affine sets
    Journal of Geometric Analysis, 34, 5 (2024). Cited by 2+ articles

  4. Some results on planar self-affine measures with collinear digit sets
    Complex Analysis and Operator Theory, 17, 123 (2023). Cited by 3+ articles

  5. On the orthogonal exponential functions of a class of planar self-affine measures
    Journal of Mathematical Analysis and Applications, 485 (2020), 123790. Cited by 4+ articles

  6. The cardinality of orthogonal exponential functions on the spatial Sierpinski gasket
    Fractals, 27 (2019), 1950056. Cited by 5+ articles

🔚 Conclusion

Dr. Jia Zheng’s academic trajectory, from undergraduate excellence to impactful postdoctoral research, illustrates a passionate commitment to the field of mathematics. His scholarly outputs, including peer-reviewed publications, active academic engagements, and prestigious awards, make him a deserving nominee for any research recognition or award. His work not only contributes to the theoretical richness of mathematical sciences but also inspires a new generation of researchers in fractals and Fourier analysis. 🌟