Davide Meloni | Neutrino Physics | Research Excellence Award

Research Excellence Award

Davide Meloni
Roma Tre University, Italy

Davide Meloni
Affiliation Roma Tre University
Country Italy
Citations Research Record
h-index Established Scholar
Subject Area Neutrino Physics
Event Global Energy Awards
ORCID 0000-0001-7680-6957

Davide Meloni is a distinguished physicist affiliated with Roma Tre University whose research activities focus on neutrino physics, particle phenomenology, and fundamental interactions. His scholarly work has contributed to advancing theoretical and experimental understanding of neutrino oscillations, flavor symmetries, and emerging directions in high-energy physics research.[1]

Abstract

This article presents an academic overview of Davide Meloni and his contributions to neutrino physics. His research addresses oscillation phenomena, flavor structures, and theoretical models that support modern particle physics investigations. Through collaborative international studies, he has contributed to the interpretation of experimental observations and the development of predictive frameworks for future neutrino experiments.[2]

Keywords

Neutrino Physics, Neutrino Oscillations, Particle Phenomenology, Flavor Symmetry, CP Violation, Long-Baseline Experiments, DUNE, ESSnuSB, High-Energy Physics, Theoretical Physics.

Introduction

Neutrino physics remains one of the most dynamic areas of contemporary fundamental science. Davide Meloni has participated in investigations concerning neutrino mixing, oscillation behavior, and beyond-standard-model scenarios. His studies support ongoing efforts to understand the origin of neutrino masses and the broader structure of particle interactions.[3]

Research Profile

As a faculty member at Roma Tre University, Davide Meloni maintains an extensive publication portfolio and active participation in international collaborations. His ORCID record documents contributions across neutrino phenomenology, flavor models, and experimental sensitivity analyses. These activities demonstrate sustained engagement with globally recognized particle physics initiatives.[1]

Research Contributions

Meloni’s research contributions include investigations of neutrino oscillation parameters, long-range interactions, modular symmetries, and leptonic CP violation. His studies frequently examine how future experiments can enhance sensitivity to new physics signatures. Such work provides theoretical guidance for interpreting precision measurements and designing experimental strategies.[4]

Publications

Recent publications authored or co-authored by Davide Meloni include studies on atmospheric neutrino interactions, neutrino charge assignments in flavor models, modular-symmetry-protected seesaw mechanisms, ESSnuSB experiment analyses, and investigations of scalar non-standard interactions. These works appear in leading journals such as Journal of High Energy Physics, Physical Review D, Universe, and European Physical Journal C, reflecting continued scholarly engagement in advanced particle physics research.[2]

Research Impact

The impact of Meloni’s work is evident through its relevance to major neutrino facilities and long-baseline experiments. His analyses contribute to the interpretation of experimental observations and support theoretical developments related to flavor physics. These contributions strengthen scientific understanding within the broader high-energy physics community.[5]

Award Suitability

The Research Excellence Award recognizes sustained scholarly achievement, research leadership, and meaningful scientific contributions. Davide Meloni’s publication record, international collaborations, and ongoing engagement with frontier questions in neutrino physics align with the objectives of academic recognition programs. His work demonstrates both disciplinary depth and continuing research productivity.

Conclusion

Davide Meloni has established a significant presence within neutrino physics through research on oscillations, flavor symmetries, and particle phenomenology. His contributions continue to support theoretical understanding and experimental progress. The breadth of his scholarly output makes him a notable contributor to contemporary high-energy physics research.

References

  1. ORCID. (2026). Davide Meloni (0000-0001-7680-6957) researcher profile.
    https://orcid.org/0000-0001-7680-6957
  2. Meloni, D., et al. (2026). Searching non-standard interactions with atmospheric neutrinos at ESSnuSB. Journal of High Energy Physics. https://doi.org/10.1007/JHEP05(2026)109
  3. Giarnetti, A., Marciano, S., & Meloni, D. (2026). Constraining the neutrino mixing matrix via single-sector charged-lepton rotations in the JUNO precision era. Symmetry.
    https://doi.org/10.3390/sym18060954
  4. Granelli, A., Meloni, D., Parriciatu, M., Penedo, J. T., & Petcov, S. T. (2025). Modular-symmetry-protected seesaw. Journal of High Energy Physics.
    https://doi.org/10.1007/JHEP12(2025)035
  5. Denton, P. B., Giarnetti, A., & Meloni, D. (2025). Solar neutrinos and the strongest oscillation constraints on scalar NSI. Journal of High Energy Physics. https://doi.org/10.1007/JHEP01(2025)097

Thierry goudon | Theoretical Advances | Best Researcher Award

Dr. Thierry goudon | Theoretical Advances | Best Researcher Award

univ. cote d’azur | France

Dr. Thierry Goudon is a renowned Senior Research Scientist at INRIA and a professor with a rich academic background in applied mathematics. Throughout his career, Goudon has contributed significantly to numerical analysis, kinetic theory, and fluid dynamics, working at leading French universities and research institutions.

👨‍🎓Profile

Google scholar

Scopus

🎓 Early Academic Pursuits

Dr. Goudon pursued a Magistère MATMECA in applied mathematics and mechanics at the University of Bordeaux 1 in the early 1990s, where he excelled by graduating ranked 1st. He went on to complete a PhD in applied mathematics in 1997, under the guidance of K. Hamdache. His early studies laid a strong foundation for his later groundbreaking work in modeling and scientific computing.

🧑‍💻 Professional Endeavors

Since 2007, Dr. Goudon has been a Senior Research Scientist at INRIA, specializing in complex systems like energy and environmental flows. He has headed multiple project teams, including COFFEE (COmplex Flows For Energy and Environment) and SIMPAF (SImulation and Models for Particles and Fluids), and served as a fellow at prestigious institutions like Ecole Centrale Marseille and ENS Paris. Goudon’s professional journey has been marked by his leadership roles in research, particularly in fluid dynamics, particle systems, and mathematical modeling.

🧑‍🔬 Contributions and Research Focus

Dr. Goudon’s research primarily focuses on kinetic and fluid dynamics, radiative transfer, and particle-fluid interactions. His pioneering work includes hydrodynamic limits for the Vlasov-Navier-Stokes equations, the development of kinetic schemes for Euler models, and biogeography models in microbiota research. His research has advanced mathematical modeling techniques for real-world problems in energy, environment, and cancer treatment.

🌍 Impact and Influence

Dr. Goudon’s influence extends beyond academia, with significant roles in various scientific committees and advisory boards. He contributed to the national AI report, chaired the scientific board at LJAD/Math. Dept. Univ. Côte d’Azur, and played key roles in evaluating research units across Europe, particularly in Portugal. His work has had a broad impact on the international scientific community, shaping research directions and funding policies.

📚 Academic Cites

Dr. Goudon has authored over 130 publications in prestigious journals, covering topics like reaction-diffusion equations, shock profiles, and radiative hydrodynamics. His work, including co-authored papers such as Hydrodynamic limits for Vlasov-Navier-Stokes equations and Analysis of large amplitude shock profiles, is frequently cited by researchers in the fields of numerical analysis, kinetic theory, and computational physics.

🛠️ Research Skills

Dr. Goudon has a profound expertise in numerical methods, particularly in kinetic schemes, fluid dynamics, and partial differential equations. He is skilled in the development of high-performance algorithms for complex simulations involving particles, fluids, and radiative transfer. His technical proficiency has also extended to the development of mathematical models for various applications, from cancer treatment to plasma physics.

🧑‍🏫 Teaching Experience

Goudon has a long history of teaching and mentoring students in applied mathematics. He has supervised doctoral students, led PhD programs in applied mathematics, and been a member of numerous academic juries and committees. His pedagogical focus has been on numerical analysis, scientific computing, and mathematical modeling.

🏅 Awards and Honors

Throughout his distinguished career, Goudon has received several accolades, including the R. Dautray Prize (SMAI–CEA) in 2008 for his work on radiative transfer. He has also been honored for his contributions to scientific computing, mathematics, and research leadership. His recognition within both French and international scientific communities underscores his exceptional impact on the field.

🏛️ Legacy and Future Contributions

Goudon’s legacy is marked by his groundbreaking research in mathematical modeling and numerical methods, which continues to influence scientific computing and applied mathematics. As a leader, his future contributions are poised to advance interdisciplinary research, with applications spanning energy, environment, and medicine. His ongoing projects promise to push the boundaries of simulation techniques and complex systems modeling.

  Publications Top Notes

Shock profiles for hydrodynamic models for fluid-particles flows in the flowing regime

  • Authors: Goudon, T., Lafitte, P., Mascia, C.
    Journal: Physica D: Nonlinear Phenomena
    Year: 2024

An explicit well-balanced scheme on staggered grids for barotropic Euler equations

  • Authors: Goudon, T., Minjeaud, S.
    Journal: ESAIM: Mathematical Modelling and Numerical Analysis
    Year: 2024

A Simple Testbed for Stability Analysis of Quantum Dissipative Systems

  • Authors: Goudon, T., Rota Nodari, S.
    Journal: Annales Henri Poincare
    Year: 2024

Shock Profiles for Fluid-Particles Flows

  • Authors: Goudon, T., Lafitte, P., Mascia, C.
    Journal: SEMA SIMAI Springer Series
    Year: 2024

A Model of Particles Interacting with Thermal Traps

  • Authors: Goudon, T.
    Journal: Journal of Statistical Physics
    Year: 2023