Kehfei Liu | Nuclear Physics | Best Researcher Award

Prof. Kehfei Liu | Nuclear Physics | Best Researcher Award

Researcher at Lawrence Berkeley National Lab, United States

👨‍🎓 Profiles

Summary 🧑‍🔬

Keh-Fei Liu is an esteemed theoretical physicist specializing in nuclear and particle physics, particularly in lattice Quantum Chromodynamics (QCD). With a career spanning decades, Liu has made significant contributions to the understanding of hadron physics, nucleon structure, and computational high-energy physics. He holds a Ph.D. in Theoretical Physics from Stony Brook University (1975) and has received numerous prestigious awards, including the Alexander von Humboldt Award and Fellowship in the American Physical Society. Liu is a recognized leader in the physics community and has played an instrumental role in various international conferences and workshops.

Education 🎓

  • B.S. (Highest Honors) (1968)

          Tunghai University, Taiwan

  • M.A. (1971)

           State University of New York, Stony Brook

  • Ph.D. in Theoretical Physics (1975)

           Stony Brook University

Professional Experience 💼

  • Professor, Department of Physics,

University of Kentucky (1986–2023)

  • Visiting Scientist

Lawrence Berkeley National Lab (2022–Present)

  • Adjunct Professor,

University of Science and Technology, Hefei, China (1989–1999)

  • Visiting Researcher,

CEN Saclay, France (1974–1976)

University of California, Los Angeles (1976–1980)

  • Humboldt Senior Scientist,

HLRZ, JĂźlich, Germany (1991)

Research Interests 🔬

  • Lattice QCD: Lattice calculations to understand hadrons and nucleon structure.
  • Nuclear and Particle Physics: Investigating fundamental forces and quark-gluon interactions.
  • Computational Physics: Development of algorithms for high-energy physics simulations.

Awards & Honors 🏆

  • First Prize in Theoretical Physics, Chinese Academy of Sciences (1987)
  • Alexander von Humboldt Award for Senior Scientist (1990)
  • Fellow, American Physical Society (1997)
  • Albert D. and Elizabeth H. Kirwan Memorial Prize, University of Kentucky (2018)
  • Outstanding Alumni Award, Tunghai University (2022)

Key Contributions 🌍

  • Leadership in Conferences & Workshops:

Organized and contributed to major international conferences on lattice QCD and hadron physics, such as Extreme QCD 2012 and the International Symposium on Lattice Field Theory.

  • Grant Leadership:

Principal Investigator for multiple DOE and NSF grants supporting research in theoretical nuclear physics, including projects on nucleon structure and quark-gluon dynamics.

 Publications

Charm physics with overlap fermions on 2+1-flavor domain wall fermion configurations
  • Authors: Li, D.-H., Chen, Y., Gong, M., Liu, Z., Wang, T.-X.
    Journal: Chinese Physics C
    Year: 2024
The present and future of QCD
  • Authors: Achenbach, P., Adhikari, D., Afanasev, A., Zhou, J., Zurek, M.
    Journal: Nuclear Physics A
    Year: 2024
Lattice QCD Calculation of Electroweak Box Contributions to Superallowed Nuclear and Neutron Beta Decays
  • Authors: Ma, P.-X., Feng, X., Gorchtein, M., Wang, B.-G., Zhang, Z.-L.
    Journal: Physical Review Letters
    Year: 2024
Trace anomaly form factors from lattice QCD
  • Authors: Wang, B., He, F., Wang, G., Liu, K.-F., Yang, Y.-B.
    Journal: Physical Review D
    Year: 2024
Temperature dependence of beam on plasma stopping power in the resonance regions of fusion reactions
  • Authors: Liu, K.-F.
    Journal: Fundamental Plasma Physics
    Year: 2024
Hadrons, superconductor vortices, and cosmological constant
  • Authors: Liu, K.-F.
    Journal: Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics
    Year: 2024
Nucleon electric dipole moment from the θ term with lattice chiral fermions
  • Authors: Liang, J., Alexandru, A., Draper, T., Wang, G., Yang, Y.-B.
    Journal: Physical Review D
    Year: 2023

 

 

Giuseppe Maino | Nuclear Physics | Best Researcher Award

Prof. Giuseppe Maino | Nuclear Physics | Best Researcher Award

Retired from University of Bologna, Italy

👨‍🎓 Profiles

🌟Summary

Giuseppe Maino is a distinguished physicist, educator, and researcher with a broad interdisciplinary focus, including nuclear structure, complex systems, biophysics, and cultural heritage preservation. He has an extensive international academic career, holding positions at leading institutions and contributing significantly to both theoretical physics and applied research for cultural heritage. With over 440 publications, numerous leadership roles in major research projects, and a passion for science communication, Maino has made impactful contributions across a range of fields. 🌍📚

🎓Education

  • Magna Cum Laude in Physics (General and Theoretical), University of Bologna, Italy 🎓
  • Scholarships from the European Physical Society, CNR – Fulbright, and the Angelo Della Riccia Foundation.
  • Studied nuclear structure under Professor Francesco Iachello, at Rijksuniversiteit Groningen (Netherlands) and later as Gibbs Professor at Yale University (USA). 🏫🌍

💼Professional Experience

  • ENEA (Italian National Agency for New Technologies, Energy, and Environment):
    • Researcher (since 1984)
    • Coordinator, Core of Competence for Nonlinear & Complex Dynamical Systems (1990-1994)
    • Deputy Director of the Division of Physics (1994-2002)
    • Research Director (2002-2015) 🧑‍🔬⚡
  • University of Bologna (1986-2015):
    • Contract Professor in Nuclear Engineering (1986-1994)
    • Professor in Cultural Heritage-related courses (1997-2015), including Computer Science for Cultural Heritage, Image Processing, and Virtual Restoration. 💻🎨
  • Visiting Professor at multiple institutions globally, including Yale University, Russian Academy of Sciences, and University of SĂŁo Paulo. 🌐📖

🔬Research Interests

  • Nuclear Physics & Complex Systems:

Focus on nonlinear dynamics, biophysics, and advanced mathematical modeling. 🔬

  • Cultural Heritage Preservation:

Developing scientific methods for the documentation, restoration, and protection of endangered cultural heritage sites. 🏛️🖼️

  • Interdisciplinary Research:

                   Exploring intersections between physics, chemistry, biophysics, and the humanities. 🌍⚛️

🏆Key Achievements 

  • Over 440 scientific publications in international journals.
  • Author of books on physical diagnostics for cultural heritage and cultural heritage preservation.
  • Organized 39 conferences and edited 19 volumes of conference proceedings with Springer and World Scientific.
  • 400+ seminars and invited talks worldwide. 🗣️

 Publications

Xenon photonuclear cross sections for the production of 123I radionuclide
    • Authors: Maino, G.
    • Journal: Radiation Physics and Chemistry
    • Year: 2024
Prime numbers, atomic nuclei, symmetries and superconductivity
    • Authors: Maino, G.
    • Journal: AIP Conference Proceedings
    • Year: 2019
A thermodynamic approach to the microclimate environment of museums
    • Authors: Maino, G., Lucia, U.
    • Journal: Physica A: Statistical Mechanics and its Applications
    • Year: 2019
Minorum Capuccinorum bibliotheca Bononiae: Incunabula and sixteenth-century editions of the Library of the convent of the Friars Minor Capuchin of Bologna
    • Authors: Maino, D.B., Maino, G.
    • Journal: Bibliothecae.it
    • Year: 2019
Non-metric digital reconstruction of Roman mosaics excavated in the city of Ravenna (Italy)
    • Authors: Monti, M., Maino, G.
    • Journal: Virtual Archaeology Review
    • Year: 2018
Computational stochastic model of ions implantation
    • Authors: Zmievskaya, G.I., Bondareva, A.L., Levchenko, T.V., Maino, G.
    • Journal: AIP Conference Proceedings
    • Year: 2015
A study of the Civic Tower in Ravenna as an example of medieval towers’ preservation problems
    • Authors: Bruni, S., Maino, G., Marrocchino, E., Vaccaro, C., Volpe, L.
    • Journal: European Physical Journal Plus
    • Year: 2013

 

 

 

Zohreh Kargar | Nuclear Physics| Best Researcher Award

Assoc Prof Dr. Zohreh Kargar | Nuclear Physics| Best Researcher Award

Academician/Research Scholar at Shiraz University, Iran

Dr. Zohreh Kargar is an esteemed Associate Professor and Chair of the Nuclear Physics Group at Shiraz University. With a robust academic background and extensive research experience, she has significantly contributed to the field of nuclear physics. Dr. Kargar has supervised 51 MSc and 9 PhD theses, mentoring the next generation of physicists. Her work encompasses various aspects of nuclear research, particularly in the domains of positron lifetime spectroscopy and nuclear structure.

Profile:

Education:

Dr. Kargar completed her Bachelor’s, Master’s, and PhD degrees in Nuclear Physics at Shiraz University. Her educational journey laid a solid foundation in theoretical and experimental physics, equipping her with the knowledge and skills necessary to pursue advanced research. Throughout her studies, she focused on complex nuclear phenomena, leading to her current research interests. Her educational background is complemented by her commitment to teaching and mentoring students in the field of nuclear science.

Professional experience:

Dr. Kargar has dedicated her career to advancing nuclear physics research and education at Shiraz University. As an Associate Professor, she has held various academic positions, contributing to numerous research projects and publications. Her extensive experience includes leading innovative studies in nuclear structure, superconductivity, and positron spectroscopy. Dr. Kargar has actively participated in national and international conferences, presenting her findings and collaborating with fellow researchers to enhance the understanding of nuclear phenomena.

Research focus:

Dr. Kargar’s current research interests focus on positron lifetime spectroscopy, superconductivity in nuclei, and cluster structures within nuclear systems. Her work aims to delve into the intricate relationships between nuclear properties and particle interactions. By employing advanced experimental techniques and theoretical models, she seeks to enhance the understanding of nuclear behaviors, which could have significant implications in both fundamental physics and practical applications in nuclear technology.

Awards and Honors:

Throughout her career, Dr. Kargar has received numerous accolades for her contributions to nuclear physics. She has been recognized for her research excellence and innovative teaching methods, earning awards that highlight her commitment to advancing science. Her leadership in the Nuclear Physics Group has fostered a collaborative environment, encouraging both research and educational achievements among her colleagues and students.

Publication Top Notes:

  • Title: Investigation of positron annihilation lifetime and magnetic properties of Co1−xCuxFe2O4 nanoparticles
    Authors: SM Asgarian, S Pourmasoud, Z Kargar, A Sobhani-Nasab
    Year: 2018
    Citations: 53
  • Title: Positron annihilation lifetime, cation distribution and magnetic features of Ni1−xZnxFe2−xCoxO4 ferrite nanoparticles
    Authors: H Nikmanesh, P Kameli, SM Asgarian, S Karimi, M Moradi, Z Kargar
    Year: 2017
    Citations: 36
  • Title: Positron annihilation and magnetic properties studies of copper substituted nickel ferrite nanoparticles
    Authors: Z Kargar, SM Asgarian, M Mozaffari
    Year: 2016
    Citations: 27
  • Title: Level density parameter study using a microscopic model
    Authors: AN Behkami, Z Kargar, N Nasrabadi
    Year: 2002
    Citations: 26
  • Title: Statistical pairing fluctuation and phase transition in 94Mo
    Authors: Z Kargar, V Dehghani
    Year: 2013
    Citations: 21
  • Title: Nuclear level densities and spin cut-off factors deduced from microscopic theory for nuclei from 20F to 244Am
    Authors: AN Behkami, Z Kargar
    Year: 1992
    Citations: 18
  • Title: Pairing correlations and thermodynamical quantities in
    Authors: Z Kargar
    Year: 2007
    Citations: 15
  • Title: Investigation of cation vacancies in Zinc substituted maghemite by positron annihilation lifetime and Doppler broadening spectroscopy
    Authors: SM Asgarian, Z Kargar, M Mozaffari
    Year: 2017
    Citations: 10
  • Title: Statistical treatment of nuclear level densities
    Authors: AN Behkami, Z Kargar
    Year: 2002
    Citations: 8
  • Title: Nuclear level density at high spin and excitation energy
    Authors: AN Behkami, Z Kargar
    Year: 2001
    Citations: 6

 

 

 

Shixiang Peng | Nuclear Physics | Best Researcher Award

Prof Dr. Shixiang Peng | Nuclear Physics | Best Researcher Award 

Academician/Research Scholar at State Key Laboratory of Nuclear Physics and Technology & Institute of Heavy Ion Physics, China

Prof. Dr. Shixiang Peng is a renowned physicist at the State Key Laboratory of Nuclear Physics and Technology and the Institute of Heavy Ion Physics, China. With extensive research in nuclear physics, his expertise lies in the application of heavy ion physics, focusing on cutting-edge experimental and theoretical methods. Dr. Peng has made significant contributions to understanding nuclear reactions and the structure of atomic nuclei. He has been an active participant in numerous international collaborations and projects aimed at advancing nuclear science. His work is highly regarded by the scientific community, earning him several prestigious awards and honors. Dr. Peng is also a dedicated mentor, guiding students and researchers in their academic and professional pursuits. His research continues to shape the future of nuclear physics, with a vision of advancing scientific knowledge and its practical applications.

🌱Profile

🧑‍🎓 Early Academic Pursuits

Shixiang Peng began his academic journey with a strong foundation in physics and engineering, honing his skills and knowledge in ion source technologies. His dedication to research led him to Peking University, where he developed a deep interest in ion source physics, laying the groundwork for a prolific career in nuclear physics and technology.

💼 Professional Endeavors

As a Professor at Peking University and the head of the ion source group at the State Key Laboratory of Nuclear Physics and Technology, Shixiang has played a crucial role in advancing research in ion sources. His leadership has fostered an environment of innovation and collaboration, attracting talented researchers to work on cutting-edge projects that push the boundaries of ion source technology.

🔬 Contributions and Research Focus

Shixiang’s research primarily revolves around ion source physics, particularly microwave ion sources. He has authored numerous publications, including works on beam efficiency and plasma simulation. His contributions to the development of miniaturized microwave ion sources and surface wave plasma sources are particularly noteworthy, showcasing his commitment to improving the performance and reliability of ion sources in various applications.

🌍 Impact and Influence

Shixiang Peng’s work has significantly influenced the field of ion source technology, with his publications being widely cited in scientific literature. His research has paved the way for advancements in nuclear physics applications, including medical and industrial uses, demonstrating the practical impact of his academic efforts on society.

📚 Academic Cites

With a remarkable record of over 20 peer-reviewed publications, Shixiang’s research is highly regarded in the scientific community. His work has garnered numerous citations, reflecting the relevance and importance of his findings in advancing ion source technology and its applications.

🛠️ Technical Skills

Shixiang possesses a diverse skill set, including expertise in plasma simulation, microwave ion sources, and beam diagnostics. His technical acumen extends to hands-on experience with advanced instrumentation, making him a leading figure in the development of innovative ion source solutions.

👨‍🏫 Teaching Experience

In addition to his research, Shixiang is committed to education, mentoring students and junior researchers in the field of nuclear physics. His teaching philosophy emphasizes hands-on experience and real-world applications, preparing the next generation of scientists to tackle complex challenges in ion source technology.

🌟 Legacy and Future Contributions

Shixiang Peng’s legacy in ion source research is marked by his innovative contributions and commitment to excellence. Looking ahead, he aims to continue advancing the field by exploring new technologies and methodologies. His vision for future research includes developing more efficient ion sources and expanding their applications in various scientific disciplines, ensuring a lasting impact on the field of nuclear physics and technology.

📖Publication Top Notes

Publication Title: C− generation by charge exchange with non-metallic gas for positive ion mass spectrometry

  • Authors: Cui, B., Peng, S., Li, K., Guo, Z., Chen, J.
    Publication Year: 2024
    Citations: 0

Publication Title: Prototype of a 2.45 GHz cylindrical ceramic dielectric antenna surface wave plasma source for flood gun

  • Authors: Peng, S., Cui, B., Jiang, Y., Guo, Z., Chen, J.
    Publication Year: 2024
    Citations: 0

Publication Title: A new proton injector based on PKU-type 2.45GHz PMECR ion source for BNCT facility

  • Authors: Cui, B., Peng, S., Ma, T., Guo, Z., Chen, J.
    Publication Year: 2024
    Citations: 0

Publication Title: Design and Experiment of a Slotted Antenna Surface Wave Plasma Flood Gun

  • Authors: Cui, B., Peng, S., Ma, T., Guo, Z., Chen, J.
    Publication Year: 2024
    Citations: 0

Publication Title: The High Beam to Power Efficiency Investigation of Miniaturized Microwave Ion Source

  • Authors: Peng, S., Ma, T., Cui, B., Guo, Z., Chen, J.
    Publication Year: 2024
    Citations: 0