Wei Xiong | Quantum Technologies | Best Researcher Award

Assoc. Prof. Dr. Wei Xiong | Quantum Technologies | Best Researcher Award

Head of Department of Physics, Wenzhou University, China

Dr. Wei Xiong is the Head of the Department of Physics at Wenzhou University and a distinguished researcher in quantum optics. With over 58 peer-reviewed publications, 1500+ citations, and a dynamic academic trajectory, he is recognized for pioneering contributions to quantum information science. His research delves into NV spin–magnon interactions, entanglement dynamics, and nonreciprocal quantum mechanisms, pushing the boundaries of theoretical and experimental physics.

👨‍🎓Profile

Google scholar

Scopus

ORCID

🎓 Early Academic Pursuits

Dr. Wei Xiong began his academic journey with a B.Sc. in Physics from Chaohu College, followed by an M.Sc. in Atomic, Molecular, and Optical Physics from Anhui University. He earned his Ph.D. in Theoretical Physics from the prestigious Fudan University. His educational background reflects a strong grounding in both fundamental and applied physics. During his training, Dr. Xiong developed deep expertise in quantum mechanics, optical systems, and magnetic interactions, laying the foundation for his future achievements in quantum optics research.

🧪Professional Endeavors

Dr. Xiong’s career includes critical academic roles, from a Research Assistant at The Hong Kong Polytechnic University, to a Postdoctoral Fellow at the Beijing Computational Science Research Center. He served as Lecturer at Hefei Universityand joined Wenzhou University, where he rose to become a Distinguished Professor. His international exposure, including a short-term academic visit to Zhejiang University, has enriched his global perspective and helped foster interdisciplinary collaborations, essential for cutting-edge quantum research.

🔬 Contributions and Research Focus

Dr. Xiong is acclaimed for his innovative research in quantum optics, notably the first realization of long-distance strong coupling between a single NV spin and magnons, and the demonstration of a magnon-mediated high-fidelity two-qubit Iswap gate. He also proposed a nonreciprocal entanglement mechanism enabled by Kerr nonlinearity in magnons, offering new pathways in quantum communication and sensing. His work bridges quantum theory and spintronics, contributing significantly to quantum information science, hybrid systems, and spin-photon interfaces.

🌐 Impact and Influence

With over 1500 citations on Google Scholar, Dr. Xiong’s work is widely recognized in the international quantum physics community. His studies have influenced next-generation quantum devices, sparking interest in both theoretical physics and experimental applications. As the Head of Department, he fosters academic excellence, encouraging innovation, collaboration, and advanced research culture. His leadership and scientific vision continue to shape young physicists, making a significant impact on research, mentoring, and institutional development.

📊 Academic Cites

Dr. Xiong’s citation index surpasses 1500, reflecting the relevance and influence of his published research. His 58 articles indexed in SCI and Scopus databases demonstrate consistent scholarly output, especially in quantum optics, hybrid quantum systems, and spin-based computing. His most cited works explore the interface of magnonics and quantum coherence, highly regarded by peers in quantum technologies and condensed matter physics. This academic footprint solidifies his position among leading early-career researchers in his field.

🧪 Research Skills 

Dr. Xiong exhibits a rare combination of theoretical modeling, experimental collaboration, and computational simulations in quantum mechanics. His strengths include designing quantum protocols, understanding nonlinear dynamics, and developing models for magnon-based entanglement. He is proficient in using analytical and numerical tools to solve complex problems in quantum field theory and quantum information processing. His collaborative spirit and technical expertise enable productive joint work across multidisciplinary platforms, enhancing research efficiency, depth, and innovation.

👨‍🏫 Teaching Experience

With nearly a decade of academic engagement, Dr. Xiong has taught a wide range of undergraduate and postgraduate courses in quantum mechanics, modern physics, electrodynamics, and advanced theoretical physics. His teaching philosophy emphasizes conceptual clarity, research integration, and student empowerment. At Wenzhou University, he has also guided several master’s and PhD-level research projects, fostering critical thinking and hands-on experience. As a departmental leader, he plays a vital role in curriculum development, faculty mentoring, and academic planning, significantly enhancing the university’s physics education standards.

🏅 Awards and Honors

Dr. Wei Xiong was promoted to Distinguished Professor at Wenzhou University in January 2023, recognizing his excellence in research and leadership. Although his record currently shows no patents or books, his scientific output, editorial role, and collaborations with global institutions stand as a testament to his academic value. His rapid promotion through academic ranks and inclusion in impactful projects mark him as a rising star in quantum optics. Membership in prominent research groups and continuous research support further highlight his dedication and scientific merit.

🌟 Legacy and Future Contributions

Dr. Xiong is poised to make transformative contributions to the fields of quantum optics and hybrid quantum systems. As a scholar, mentor, and leader, he is building a research legacy rooted in fundamental discovery and real-world impact. His long-term vision includes expanding nonreciprocal quantum devices, engaging in cross-border collaborations, and fostering young scientific talent. With continued focus on quantum entanglement mechanisms, he is expected to contribute solutions to emerging challenges in quantum communication and quantum computing, ultimately shaping the next generation of optical and quantum technologies.

Publications Top Notes

Strong and noise-tolerant entanglement in dissipative optomechanics
  • Authors: Jiaojiao Chen, Wei Xiong, Dong Wang, Liu Ye
    Journal: Physical Review A
    Year: 2025

Mechanical Dynamics Around Higher‐Order Exceptional Point in Magno‐Optomechanics
  • Authors: Wen‐Di He, Xiao‐Hong Fan, Ming‐Yue Liu, Guo‐Qiang Zhang, Hai‐Chao Li, Wei Xiong
    Journal: Advanced Quantum Technologies
    Year: 2025

Cavity magnon–polariton interface for strong spin–spin coupling
  • Authors: Ma-Lei Peng, Miao Tian, Xue-Chun Chen, Ming-Feng Wang, Guo-Qiang Zhang, Hai-Chao Li, Wei Xiong
    Journal: Optics Letters
    Year: 2025

Nonreciprocal Microwave-Optical Entanglement in Kerr-Modified Cavity Optomagnomechanics
  • Authors: Ming-Yue Liu, Yuan Gong, Jiaojiao Chen, Yan-Wei Wang, Wei Xiong
    Journal: Chinese Physics B
    Year: 2025

Coherent competition and control between three-wave mixing and four-wave mixing in superconducting circuits
  • Authors: Miao-Xiang Liang, Yu-Xiang Qiu, Hai-Chao Li, Wei Xiong
    Journal: Physical Review A
    Year: 2025

 

 

 

Avijit Ghosh | Solar cell | Best Faculty Award

Mr. Avijit Ghosh, Solar cell, Best Faculty Award

Research Assistant at Advanced Energy Materials and Solar Cell Research Laboratory, BRUR

Avijit Ghosh, an innovative electrical engineer, graduated with distinction (CGPA: 3.57/4.00) from Begum Rokeya University, Rangpur. Passionate about material science, solar cells, and density function theory, he served as a Research Assistant at the Advanced Energy Materials and Solar Cell Research Laboratory, BRUR, showcasing a two-year commitment to cutting-edge research. Avijit’s academic prowess earned him prestigious scholarships, including the Banghabondhu Brilliant Scholarship. Beyond academics, he held leadership roles, notably as the former Co-President of the Pabna District Student Welfare Association. Avijit is defined by his commitment to excellence, strong moral ethics, and a keen interest in advancing technological frontiers.

Professional Profiles:

Scopus profile

Orcid profile

Googlescholar profile

Researchgate profile

EDUCATION QUALIFICATION:📚

Degree: B.Sc. in Engineering Department/Group: Electrical and Electronic Engineering (EEE). University/Institute/School: Begum Rokeya University, Rangpur (BRUR) CGPA: 3.57/4.00

EXPERIENCE:

Position: Research Assistant Organization: Advanced Energy Materials and Solar Cell Research Laboratory, BRUR Period: 2022 – 2023 Duration: 2 Years.

ACHIEVEMENT AND AWARDS:

Banghabondhu Brilliant Scholarship: Awarded by Academic Council, BRUR for securing good results in exams for 3 consecutive semesters of B.Sc. study. Secondary School Merit Scholarship: Awarded by school for excellent performance in Secondary School Certificate Result. Junior School Merit Scholarship: Awarded by Rajshahi Education Board for getting ‘Talentpool Scholarship’ in Junior School Certificate Examination, 2012.

RESEARCH INTEREST:

Material Science, Solar Cell, Density Function Theory.

Research Focus:

Avijit Ghosh is a dedicated researcher with a primary focus on the exploration of novel inorganic halide perovskites and their properties. His research, spanning various publications in reputable journals, delves into the impact of strain, spin-orbit coupling, and biaxial strain on the structural, electronic, and optical characteristics of materials like Sr3AsI3, Sr3NCl3, and Sr3PI3. With a keen interest in enhancing solar cell efficiency, Ghosh has contributed to the field by investigating charge transport layers and novel materials like Sr3SbI3. His work extends to numerical simulations for performance enhancement, demonstrating a comprehensive approach to advancing materials science and renewable energy technologies.

Publications (TOP NOTES)

 

Investigation strain effects on the electronic, optical, and output performance of the novel inorganic halide perovskite Sr3SbI3 solar cell,  Publication date: 2024.

 

An in-depth analysis of how strain impacts the electronic, optical, and output performance of the Ca3NI3 novel inorganic halide perovskite, Publication date: 2024.

 

Unraveling the strain-induced and spin–orbit coupling effect of novel inorganic halide perovskites of Ca3AsI3 using DFT, Publication date: 2023.

 

The optical and electronic properties of inorganic halide perovskite Sr3NCl3 under applied biaxial strain, Publication date: 2023.

 

Inorganic novel cubic halide perovskite Sr3AsI3: Strain-activated electronic and optical properties, Publication date: 2023.

 

Exploring the impact of strain on the electronic and optical properties of inorganic novel cubic perovskite Sr3PI3, Publication date: 2023.

 

Investigating how the electronic and optical properties of a novel cubic inorganic halide perovskite, Sr 3NI 3 are affected by strain, Publication date: 2023.

 

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Yanhui Wang | High Energy Physics | Best Researcher Award

Prof. Yanhui Wang, High Energy Physics, Best Researcher Award

PHD at Yanshan University, Qinhuangdao, China

Dr. Yanhui Wang, a distinguished Professor at Hebei University of Engineering, specializes in advanced steel materials, focusing on bearing steel and rail steel. With a Ph.D. in Materials Science and Engineering from Yanshan University, his expertise extends to experimental design and computational simulation of materials. Throughout his academic journey, Dr. Wang has contributed significantly to understanding phase transformation, microstructure control, and deformation behavior. As a dedicated researcher, he actively shapes the field, emphasizing the practical applications of his work. Driven by a passion for material science, Dr. Wang continues to inspire through his teaching and cutting-edge contributions to the realm of advanced materials.

Professional Profiles:

Scopus profile

Researchgate profile

Academic Background:📚

Ph.D., School of Materials Science and Engineering, Yanshan University, Qinhuangdao, China, 2017. Master, School of Materials Science and Engineering, Yanshan University, Qinhuangdao, China, 2013. B.S., School of Materials Science and Engineering, Yanshan University, Qinhuangdao, China, 2011.

Professional Experience:

Professor, Hebei University of Engineering, December 2022 – Present. Associate Professor, Hebei University of Engineering, October 2017 – November 2022. Lecturer, Hebei University of Engineering, June 2017 – September 2017.

Research Focus:

Dr. Yanhui Wang’s research focuses on advanced steel materials, specifically bearing steel and rail steel. His expertise lies in experimental design and computational simulation of materials, with a particular emphasis on phase transformation, microstructure control, deformation behavior, and processing techniques. Driven by a passion for material science, he actively contributes to the field through innovative research and practical applications.

Publications (TOP NOTES)

Constructing composite active centers optimized with Cr-doped NiS/NiS2 heterostructure for efficiently catalyzing alkaline hydrogen evolution reaction,  Publication date: 2024.

Transition metal nitride/sulfide nanoparticles attached to nitrogen-doped carbon nanotubes synthesized by modified black powder detonation for efficient overall water splitting, Publication date: 2024.

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