Sergio Manzetti | Mathematics | Best Researcher Award

Dr. Sergio Manzetti | Mathematics | Best Researcher Award

Linnaeus University | France

Dr. Sergio Manzetti is a distinguished researcher whose interdisciplinary work bridges mathematics, quantum information theory, and nanotechnology. With an h-index of 26, 4,946 citations, and numerous scholarly documents, his research demonstrates both depth and global impact. His expertise spans mathematical analysis, Fourier analysis of partial differential equations (PDEs), quantum chemistry, computational systems, and nonlinear dynamics, contributing significantly to the understanding of quantum systems and wave phenomena. Dr. Manzetti’s academic foundation includes advanced degrees from Uppsala University, Linnaeus University, Queensland University of Technology, and Oslo University College, where he specialized in the mathematical and physical sciences. His professional experience is equally impressive—serving as an EU expert for Marie-Curie Fellowships, AI prompt reviewer at Mercor Intelligence, and researcher at Fjord-Research AS. He has co-authored influential publications in Analysis and Mathematical Physics, Advanced Theory and Simulations, and RSC Advances, addressing topics from eigenvalue problems of non-self-adjoint operators to supersymmetric wave equations and nanomaterial design. Skilled in Python, Mathematica, and MATLAB, Dr. Manzetti combines theoretical rigor with computational precision. His contributions to quantum information systems, rogue wave modeling, and nanotechnology continue to advance interdisciplinary research, positioning him as a leading figure in applied mathematics and theoretical chemistry.

Profiles : Scopus | Orcid | Google Scholar

Featured Publications

Manzetti, S., & Khrennikov, A. (2025, September 28). Quantum and topological dynamics of GKSL equation in camel-like framework. Entropy.

Manzetti, S. (2025, September 22). Geometric formalism for quantum entanglement via B³ and S⁰ mappings. Preprint.

Manzetti, S., & Khrennikov, A. (2025, July 11). Quantum and topological dynamics of the GKSL equation in the camel-like framework. Preprint.

Kumar, R., Hiremath, K. R., & Manzetti, S. (2024, April). A primer on eigenvalue problems of non-self-adjoint operators. Analysis and Mathematical Physics.

Manzetti, S. (2021). Spectral properties of non-self adjoint operators: A review of the recent literature. Unpublished manuscript.

Kamerlin, N., Delcey, M. G., Manzetti, S., & van der Spoel, D. (2020, August 24). Toward a computational ecotoxicity assay. Journal of Chemical Information and Modeling.

Manzetti, S., & Trounev, A. (2020, January). Analytical solutions for a supersymmetric wave-equation for quasiparticles in a quantum system. Advanced Theory and Simulations.

Manzetti, S. (2020, January). Electromagnetic vorticity in a square-well crystal system described by a supersymmetric wave-equation. Advanced Theory and Simulations.

Ghisi, R., Vamerali, T., & Manzetti, S. (2019). Accumulation of perfluorinated alkyl substances (PFAS) in agricultural plants: A review. Environmental Research.

van der Spoel, D., Manzetti, S., Zhang, H., & Klamt, A. (2019, August 27). Prediction of partition coefficients of environmental toxins using computational chemistry methods. ACS Omega.

Manzetti, S., & Gabriel, J.-C. P. (2019, March 2). Methods for dispersing carbon nanotubes for nanotechnology applications: Liquid nanocrystals, suspensions, polyelectrolytes, colloids and organization control. International Nano Letters.

Manzetti, S., & Trounev, A. (2019, May). Supersymmetric Hamiltonian and vortex formation model in a quantum nonlinear system in an inhomogeneous electromagnetic field. Advanced Theory and Simulations.

Behzadi, H., Manzetti, S., Dargahi, M., Roonasi, P., & Khalilnia, Z. (2018). Application of calculated NMR parameters, aromaticity indices and wavefunction properties for evaluation of corrosion inhibition efficiency of pyrazine inhibitors. Journal of Molecular Structure.

Manzetti, S. (2018). Applied quantum physics for novel quantum computation approaches: An update. Computational Mathematics and Modeling.

Manzetti, S. (2018). Mathematical modeling of rogue waves, a review of conventional and emerging mathematical methods and solutions. Preprint.

Manzetti, S. (2018, November 8). Derivation and numerical analysis of an attenuation operator for non-relativistic waves. Scientific Reports.

Manzetti, S., & Lu, T. (2018, August 20). Addendum: Solvation energies of butylparaben, benzo[a]pyrene diol epoxide, perfluorooctanesulfonic acid, and DEHP in complex with DNA bases. Chemical Research in Toxicology.

Manzetti, S. (2018, June 20). Mathematical modeling of rogue waves: A survey of recent and emerging mathematical methods and solutions. Axioms.

Xiangyu Wang | Physics and Astronomy | Best Researcher Award

Assoc. Prof. Dr. Xiangyu Wang | Physics and Astronomy | Best Researcher Award

Beijing University of Posts and Telecommunications | China

Author Profile

Orcid

🌱 Early Academic Pursuits

Assoc. Prof. Dr. Xiangyu Wang embarked on his academic journey with a profound interest in quantum physics and optics. His dedication to understanding the intricacies of quantum information science laid the foundation for his illustrious career. His academic achievements were marked by rigorous training, culminating in advanced degrees that equipped him with the knowledge and skills necessary to excel in quantum communication research.

🚀 Professional Endeavors

Dr. Wang currently serves as an Associate Professor and Master's Supervisor at the School of Electronic Engineering and the National Key Laboratory of Information Photonics and Optical Communication at Beijing University of Posts and Telecommunications. His expertise centers on quantum key distribution (QKD) and quantum random number generators, two pivotal technologies driving advancements in secure communication systems. As a mentor and leader, he nurtures the next generation of quantum scientists, fostering innovation and excellence in his field.

📚 Contributions and Research Focus

Dr. Wang has authored over 30 SCI-indexed papers published in prestigious journals such as npj Quantum Information, Physical Review Letters, Optics Letters, and Optics Express. His research contributions span experimental and theoretical advancements in QKD, emphasizing continuous-variable techniques and their practical implementations. His work on information reconciliation, privacy amplification, and error correction protocols has significantly enhanced the efficiency and security of quantum communication systems. With over 900 citations in the past five years, Dr. Wang's research resonates deeply within the global scientific community.

🏆 Accolades and Recognition

Dr. Wang's exceptional contributions have earned him invitations to serve as a special editor-in-chief for Frontiers Publishing and as a special reviewer for leading journals recognized by the Chinese Academy of Sciences. His role as a peer reviewer underscores his standing as an authority in quantum communication and his commitment to maintaining the highest standards of scientific rigor.

🌍 Impact and Influence

Dr. Wang's research has profound implications for secure communication networks, ensuring robust protection against cyber threats in an increasingly digital world. His innovative approaches to QKD and quantum random number generation have established new benchmarks in the field. By bridging theoretical concepts with practical applications, he contributes to the development of secure, scalable quantum communication systems.

✨ Legacy and Future Contributions

Assoc. Prof. Dr. Xiangyu Wang is poised to leave an indelible mark on the field of quantum communication. His vision for the future encompasses pioneering research, mentoring young scientists, and collaborating with international peers to address the challenges of quantum technologies. As the field evolves, Dr. Wang’s contributions will undoubtedly inspire and guide advancements in secure and efficient quantum communication, shaping the future of information technology.

 

Publications


  • 📘Highly Precise Time Compensation Algorithm for Synchronous Communication System Based on Least Squares
    Journal: Optics
    Year: 2025-01-09
    Authors: Jin Su, Changshui Li, Qingbo Liu, Sheng Zhao, Xiangyu Wang

  • 📘Experimental Implementation of Four-User Downstream Access Network Continuous-Variable Quantum Key Distribution
    Journal: Journal of Lightwave Technology
    Year: 2024
    Authors: Zhenghua Li, Xiangyu Wang, Dengke Qi, Ziyang Chen, Song Yu

  • 📘Experimental Demonstration of a Quantum Downstream Access Network in Continuous-Variable Quantum Key Distribution with a Local Local Oscillator
    Journal: Photonics Research
    Year: 2024-06-01
    Authors: Dengke Qi, Xiangyu Wang, Zhenghua Li, Jiayu Ma, Ziyang Chen, Yueming Lu, Song Yu

  • 📘Multiple-Quadrature-Amplitude-Modulation Continuous-Variable Quantum Key Distribution Realization with a Downstream-Access Network
    Journal: Physical Review A
    Year: 2024-05-17
    Authors: Junyu Zhang, Xiangyu Wang, Fan Xia, Song Yu, Ziyang Chen

  • 📘Security Analysis of Imperfect Gaussian Modulation Caused by Amplitude Modulator in Continuous–Variable Quantum Key Distribution
     Journal: Symmetry
    Year: 2023-07-20
    Authors: Zhenghua Li, Xiangyu Wang, Ziyang Chen, Bingjie Xu, Song Yu

 

Byoung Ham | Physics and Astronomy | Best Researcher Award

Prof. Byoung Ham | Physics and Astronomy | Best Researcher Award

Gwangju Institute of Science and Technology | South Korea

Author profile

Scopus

Orcid

Early Academic Pursuits 📚

Prof. Byoung S. Ham began his academic journey with a Bachelor's degree in Physics from Sogang University, South Korea, in 1986. He furthered his education in the United States, obtaining a Master's degree in Physics from Wayne State University in 1993, followed by a Ph.D. in Electrical Engineering from the same institution in 1995. His doctoral thesis focused on the experimental study of lasing without population inversion in ruby, while his master's thesis dealt with the external cavity amplification of photon echo.

Professional Endeavors 🏢

Prof. Ham's career has been marked by significant contributions to academia and research institutions. After completing his Ph.D., he joined the Research Laboratory of Electronics at MIT as a postdoctoral associate, where he conducted research on optical quantum memories from 1996 to 1999. He returned to South Korea in 1999, joining the Electronics and Telecommunications Research Institute (ETRI) as a senior researcher and project leader. From 2003 to 2013, he served as an associate professor, professor, and Inha Fellow Professor at Inha University. In 2013, he joined the Gwangju Institute of Science and Technology (GIST) as a distinguished professor and has been directing the Center for Photon Information Processing since then.

Contributions and Research Focus 🔬

Prof. Ham's research focuses on fundamental quantum physics, specifically the wave nature-based quantum technologies. He has made substantial contributions to solid-state Electromagnetically Induced Transparency (EIT) research in the field of quantum optics. His innovative work includes the development of quantum switches, photon logic gates, quantum optical memories, and advanced optical switching methods. His research has led to several patents, enhancing the practical applications of his theoretical findings.

Accolades and Recognition 🏆

Throughout his illustrious career, Prof. Ham has received numerous awards recognizing his contributions to science and technology. Notable accolades include the Best Award from the Optical Society of Korea (2013), the Best Scientist Award from the City of Incheon (2010), and the Scientist of the Month Award from the Ministry of Education, Science and Technology of South Korea (2010). His innovative patents in quantum technology have further solidified his reputation as a leading researcher in his field.

Impact and Influence 🌍

Prof. Ham's work has had a profound impact on the field of quantum optics and engineering. His research on quantum memories and photon logic gates has paved the way for advancements in quantum computing and communication technologies. With over 100 scientific journal publications, 50 international invited talks, and more than 4600 SCI journal citations, his contributions have significantly influenced both academic and industrial applications.

Legacy and Future Contributions Highlight 🚀

Looking to the future, Prof. Ham continues to be a pioneer in quantum optics and technology. His ongoing research aims to further explore the fundamental principles of quantum physics, with the potential to revolutionize various technological domains. As a mentor and educator, he has inspired countless students and researchers, ensuring the continued growth and evolution of the field. Prof. Ham's legacy is marked by his relentless pursuit of knowledge and innovation, setting a high standard for future generations of scientists and engineers.

 

Publications 📓


📝Intensity-Product-Based Optical Sensing to Beat the Diffraction Limit in an Interferometer

Authors: Byoung S. Ham
Journal: SensorsYear: 2024


📝Phase-controlled coherent photons for the quantum correlations in a delayed-choice quantum eraser scheme

Authors: Ham, B.S.
Journal: Scientific Reports
Year: 2024


📝Coherently driven quantum features using a linear optics-based polarization-basis control

Authors: Ham, B.S.
Journal: Scientific Reports
Year: 2023


📝Observations of the delayed-choice quantum eraser using coherent photons

Authors: Kim, S., Ham, B.S.
Journal: Scientific Reports
Year: 2023


📝Revisiting self-interference in Young’s double-slit experiments

Authors: Kim, S., Ham, B.S.
Journal: Scientific Reports
Year: 2023