Jiangming Yao | Nuclear Physics | Best Researcher Award

Prof. Jiangming Yao | Nuclear Physics | Best Researcher Award

School of Physics and Astronomy, Sun Yat-sen University | China

Jiangming Yao is a Professor at the School of Physics and Astronomy at Sun Yat-sen University in Zhuhai, Guangdong, China. He is an expert in nuclear physics, specializing in quantum many-body approaches, including ab initio calculations and chiral effective field theory. With a strong academic background, he has significantly contributed to the study of nuclear structure, hypernuclei, and neutron stars, and has made strides in neutrino physics and CP violation.

👨‍🎓 Profile

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📚 Early Academic Pursuits

Jiangming Yao’s academic journey began at Nankai University, where he earned his BSc in 2004. He continued his academic excellence at Peking University, completing a PhD in Nuclear and Particle Physics in 2009 under the supervision of Jie Meng. His doctoral research, Covariant Density Functional Theory for Nuclear Spectroscopy, laid the foundation for his future work in nuclear structure and theoretical models. He also undertook an exchange program at Technical University of Munich in Germany, supervised by Peter Ring, where he expanded his theoretical knowledge.

đź’Ľ Professional Endeavors

Professor Yao’s career spans multiple prestigious institutions globally. After earning his PhD, he held several postdoctoral research positions at the UniversitĂ© Libre de Bruxelles, University of North Carolina at Chapel Hill, and Michigan State University‘s FRIB/NSCL. He later served as an Assistant Professor at Tohoku University in Japan before returning to China, where he is now a Professor at Sun Yat-sen University. His professional journey reflects a deep commitment to advancing nuclear theory through innovative computational methods.

🔬 Contributions and Research Focus

Professor Yao’s research primarily focuses on quantum many-body approaches with applications to nuclear matrix elements in neutrino physics and nuclear structure. He applies chiral effective field theory to model neutrinoless double-beta decay and CP violation, while also utilizing nuclear density functional theory for exploring nuclear matter and neutron stars. His work on hypernuclei and the study of Schiff moments for new physics are fundamental for advancing our understanding of nuclear interactions in extreme conditions.

📊 Academic Cites

Professor Yao has authored over 100 peer-reviewed research papers, with an impressive H-index of 33 and more than 3,000 citations. His research output is highly respected in the scientific community, with notable recognition for his contributions in journals like Physical Review C, Progress of Theoretical and Experimental Physics, and the European Physical Journal A. His research impact is reflected in his academic presence on databases like Web of Science, ORCID, and Inspirehep.

🛠️ Research Skills

Professor Yao is highly proficient in various computational methods central to nuclear physics. These include ab initio calculations, nuclear density functional theory (DFT), and chiral effective field theory (EFT). His expertise also spans the use of advanced techniques like multi-reference covariant DFT, generator coordinate method, and the in-medium similarity renormalization group (IM-SRG), enabling highly accurate studies of nuclear structure, exotic nuclei, and nuclear reactions.

👩‍🏫 Teaching Experience

Professor Yao has been an inspiring educator at Sun Yat-sen University, where he teaches courses such as Advanced Quantum Mechanics, Atomic Physics, Nuclear Theory, and Introduction to Nuclear and Particle Physics. His dedication to mentoring graduate students, alongside his extensive tutoring experience at Peking University and Southwest University, underscores his commitment to shaping the next generation of physicists. His students are often involved in high-impact nuclear research topics under his guidance.

🏆 Awards and Honors

Professor Yao has received numerous prestigious awards and grants in recognition of his innovative contributions to nuclear physics. Notable among these is his National Natural Science Foundation of China (NSFC) grants, including a significant award for his project on ab initio nuclear matrix elements for neutrinoless double beta decay. He also earned the Wu-Si Scholarship for Top Students during his studies at Peking University and has been honored with multiple research funding initiatives over his career.

🌱 Legacy and Future Contributions

Professor Yao’s work has laid the groundwork for continued progress in nuclear physics, especially in the realms of neutrino physics and nuclear matrix element calculations. His leadership in organizing high-impact workshops and symposia, such as the Workshop on Generator Coordinate Method and the Symposium on Nuclear Physics in Guangdong-Hong Kong-Macao Area, reflects his dedication to fostering collaboration and advancing the field. His ongoing research promises to deepen our understanding of nuclear interactions and contribute to groundbreaking discoveries in particle physics and astrophysics.

  Publications Top Notes

Ab initio Uncertainty Quantification of Neutrinoless Double-Beta Decay in Ge-76

    • Authors: Belley, A.; Yao, J.M.; Bally, B.; Pitcher, J.; Engel, J.; Hergert, H.; Holt, J.D.; Miyagi, T.; RodrĂ­guez, T.R.; Romero, A.M. et al.
    • Journal: Physical Review Letters
    • Year: 2024

Emulating generator coordinate method with extended eigenvector continuation: Lipkin-Meshkov-Glick model

    • Authors: Luo, Q.Y.; Zhang, X.; Chen, L.H.; Yao, J.M.
    • Journal: arXiv
    • Year: 2024

Low-momentum relativistic nucleon-nucleon potentials: Nuclear matter

    • Authors: Wang, C.; Wang, S.; Tong, H.; Hu, J.; Yao, J.
    • Journal: Physical Review C
    • Year: 2024

Multireference covariant density-functional theory for the low-lying states of odd-mass nuclei

    • Authors: Zhou, E.F.; Wu, X.Y.; Yao, J.M.
    • Journal: Physical Review C
    • Year: 2024

Quantum-Number Projected Generator Coordinate Method for ^21Ne with a Chiral Two-Nucleon-Plus-Three-Nucleon Interaction

    • Authors: Lin, W.; Zhou, E.; Yao, J.; Hergert, H.
    • Journal: Symmetry
    • Year: 2024

 

 

 

Felix Olise | Nuclear Physics | Best Researcher Award

Prof. Felix Olise | Nuclear Physics | Best Researcher Award 

Professor at Obafemi Awolowo University, Ile-Ife , Nigeria

Prof. Felix Samuel Olise, born on August 13, 1971, is a Nigerian nuclear physicist with expertise in engineering physics and environmental pollution. He obtained his BSc, MSc, and PhD from Obafemi Awolowo University (OAU), Nigeria, specializing in nuclear physics and material science. With a deep commitment to academia, Prof. Olise has made significant contributions to atomic and nuclear analytical techniques, particularly in environmental impact assessments. He has supervised numerous postgraduate theses and actively collaborates with international research institutions, including iThemba Labs in South Africa and the University of Lisbon in Portugal. His extensive research has resulted in over 50 peer-reviewed publications, and he is a regular reviewer for prominent scientific journals. Prof. Olise’s ongoing research focuses on optimizing XRF and PIXE techniques for industrial applications, with an emphasis on environmental pollution and artisanal mining impacts.

Profile:

Education:

Prof. Felix Samuel Olise holds an extensive educational background in engineering physics, having pursued all his degrees from Obafemi Awolowo University (OAU), Ile-Ife, Nigeria. He completed his PhD in Engineering Physics, Nuclear Engineering Science Option, in 2009, with a dissertation focused on elemental analysis of tailings from tin mining areas in Jos, Nigeria, using ion beam and neutron activation techniques. His MSc, awarded in 2004, was in Environmental Physics, where he studied the concentration of toxic metals in ambient air in Lagos and Ile-Ife using the Total Reflection X-ray Fluorescence (TXRF) technique. Prof. Olise earned his BSc in 1995 in Engineering Physics, specializing in Materials Science, with a dissertation on the optical characterization of lithium-nickel oxide thin films. His rigorous academic training has equipped him with the expertise to lead cutting-edge research in nuclear physics and environmental pollution assessment.

Professional experience:

Prof. Felix Samuel Olise has garnered extensive experience in the field of engineering physics, particularly in the development and application of atomic and nuclear analytical techniques. Over the years, he has collaborated with international research centers such as iThemba Labs in South Africa and the University of Lisbon in Portugal. He has been a resource person for various training workshops, including courses on radiation protection for the petroleum industry and for the Nigeria Nuclear Regulatory Agency. Prof. Olise has supervised over 20 MSc theses and currently oversees the research of two PhD candidates. His professional accomplishments include contributions to environmental pollution studies, particularly in assessing the impact of artisanal mining activities. As a prolific researcher, Prof. Olise has authored more than 50 peer-reviewed journal articles and has been actively involved in organizing national and international scientific conferences, as well as serving as a reviewer for leading journals in his field.

Research focus:

Prof. Felix Samuel Olise’s research focus lies in the fields of atomic and nuclear physics, with a specific emphasis on the environmental impact of human activities, such as artisanal mining. His work primarily involves the development and application of nuclear analytical techniques, including Total Reflection X-ray Fluorescence (TXRF) and Proton Induced X-ray Emission (PIXE), for the detection and analysis of toxic metals and radionuclides. Prof. Olise is also engaged in optimizing these techniques for broader applications in science and industry. His research has a strong focus on biomonitoring heavy metal emissions from industrial processes, particularly secondary iron and steel smelting. Additionally, Prof. Olise is involved in pre-equilibrium nuclear reaction cross-section calculations and L-shell ionization studies. Through his research, he aims to address pressing environmental challenges while contributing to the advancement of nuclear physics and its practical applications in environmental pollution assessment.

Awards and Honors:

Prof. Felix Samuel Olise has been recognized with several prestigious awards and grants throughout his academic career. Notable among them is the Nigerian Education Trust Fund (ETF) Travel Grant, which supported his participation at the 22nd International Conference on the Application of Accelerators in Research & Industry in Texas, USA, in 2012. He has also received travel grants from the International Atomic Energy Agency (IAEA) for conferences in the UK (2010), Brazil (2013), and the USA (2013). His research fellowship, awarded by TWAS-UNESCO, allowed him to work at iThemba Labs in South Africa between 2012 and 2015. Prof. Olise’s contributions to the scientific community are further recognized through his role as a reviewer for several international journals and his collaboration with various research institutions. These accolades reflect his dedication to advancing nuclear physics and its application in environmental science.

Publication Top Notes:

  • Calculation of 9Be and 12C thick targets neutron yields from particle accelerator-induced nuclear reactions using PHITS code
    Authors: Olise, F.S., Omowumi, N.O.
    Publication Year: 2024
    Citations: 0
  • Spatial-temporal variation and local source identification of air pollutants in a semi-urban settlement in Nigeria using low-cost sensors
    Authors: Owoade, O.K., Abiodun, P.O., Omokungbe, O.R., Jones, R.L., Hopke, P.K.
    Publication Year: 2021
    Citations: 15
  • Seasonal Variation, Pollution Indices and Trajectory Modeling of Bio-monitored Airborne Particulate Around Two Smelting Factories in Osun State, Nigeria
    Authors: Olise, F.S., Ogundele, L.T., Olajire, M.A., Owoade, O.K.
    Publication Year: 2020
    Citations: 2
  • Calculated proton-induced L-shell ionisation and X-ray production cross sections for Tc, Pm, Os, Po, At, Rn, Ra and Ac
    Authors: Aladese, A.D., Olise, F.S.
    Publication Year: 2020
    Citations: 2
  • Proton induced L-shell cross-sections for some post-transition metals: A comparison of ECPSSR and SCA models
    Authors: Olise, F.S., Nana, F.I., Aladese, A.D.
    Publication Year: 2020
    Citations: 1
  • Variations in elemental and radiometric concentrations of soils around a mining site in Southwestern Nigeria
    Authors: Olise, F.S., Ajayi, O.O., Ezeh, G.C., Owoade, O.K.
    Publication Year: 2020
    Citations: 0
  • Contamination and source identification of the elemental contents of soil samples from municipal and medical waste Dumpsites in Ile-Ife, Nigeria
    Authors: Owoade, M.O.K., Ogundele, L.T., Olise, F.S., Ezeh, G.C., Hopke, P.K.
    Publication Year: 2020
    Citations: 1
  • Biomonitoring of environmental pollution in the vicinity of iron and steel smelters in southwestern Nigeria using transplanted lichens and mosses
    Authors: Olise, F.S., Ogundele, L.T., Olajire, M.A., Fawole, O.G., Ezeh, G.C.
    Publication Year: 2019
    Citations: 14
  • Morpho-physiological characteristics of Vigna unguiculata [L.] Walp grown in a controlled environment using effluents from a beverage bottling company
    Authors: Abiodun, O.P., Owoade, O.K., Oladipo, O.T., Fawole, O.G., Olise, F.S.
    Publication Year: 2019
    Citations: 5

Conclusion:

Prof. Felix Samuel Olise is a highly accomplished researcher with a distinguished record in nuclear physics. His extensive academic background, numerous high-impact publications, international collaborations, and commitment to mentoring young scholars make him a strong candidate for the Best Researcher Award. His global recognition through prestigious grants and his professional contributions to the scientific community further solidify his eligibility. While there is room for expanding his research collaborations and outreach efforts, Prof. Olise’s work undoubtedly contributes to the advancement of nuclear science and its applications, positioning him as a leader in his field.