Nour Abdulameer | High Energy Physics | Best Researcher Award

Dr. Nour Abdulameer | High Energy Physics | Best Researcher Award

Student  at Debrecen university, Hungary

Dr. Nour Jalal Abdulameer is a dedicated and emerging researcher in high-energy physics with a strong academic foundation, including a Ph.D. from the University of Debrecen. Her research contributions span nuclear and particle physics, with active involvement in major international collaborations such as the PHENIX Experiment. She has co-authored several technical notes and analysis reports related to particle collisions and solar events, showcasing her skills in data analysis, detector calibration, and simulation. Dr. Abdulameer has also presented at numerous global conferences and participated in advanced workshops, reflecting her active engagement in the scientific community. In addition to research, she has contributed significantly to teaching physics and medical physics across universities in Iraq and Hungary. Proficient in programming and multilingual, she is well-positioned for international collaboration. With further focus on peer-reviewed publications and leading independent research projects, she holds strong potential as a candidate for the Best Researcher Award.

Professional Profile 

Education🎓

Dr. Nour Jalal Abdulameer has pursued a progressive academic path in the field of physics, beginning with a Bachelor’s degree in Physics Science from Thi-Qar University, Iraq (2011–2015). She advanced her specialization by earning a Master’s degree in Nuclear and Plasma Physics from the same institution (2016–2018), where she developed a strong foundation in theoretical and applied physics. Her academic journey reached its pinnacle with her ongoing Ph.D. studies in High Energy Physics at the University of Debrecen, Hungary (2020–present). Throughout her doctoral program, she has engaged in advanced coursework and hands-on research in experimental particle physics, data acquisition, astrophysics, and detector technology. Her participation in specialized schools such as the CERN School in Korea and the Asia-Europe-Pacific School of High-Energy Physics further enriched her technical knowledge. This strong and diverse educational background has equipped her with the expertise and practical skills essential for cutting-edge research in modern physics.

Professional Experience📝

Dr. Nour Jalal Abdulameer has accumulated diverse professional experience across academia, research, and technical roles. She began her academic career as an Assistant Lecturer in Medical Physics at Al-Ayen University, Iraq (2018–2020), where she taught undergraduate laboratory courses. She later served at Thi-Qar University, instructing seminars in Quantum Mechanics, Electricity, and Nuclear Physics. Since 2020, she has been an Assistant Lecturer at the University of Debrecen, Hungary, contributing to physics education while actively engaging in research. Dr. Abdulameer has been a researcher in the PHENIX Experiment and has worked part-time at the Wigner Research Centre for Physics in Budapest since 2023. Her industry-related experience includes a technical role as a Medical Assistant handling dental X-rays and a Sales Engineer position focusing on technical solutions and customer support. These roles demonstrate her versatility in blending research, teaching, and practical applications of physics, underscoring her capability as a well-rounded physics professional.

Research Interest🔎

Dr. Nour Jalal Abdulameer’s research interests lie primarily in the field of high-energy and nuclear physics, with a strong focus on experimental particle physics. Her work involves analyzing heavy-ion collisions to study fundamental particles and their interactions under extreme conditions, as part of the PHENIX Experiment collaboration. She is particularly interested in topics such as Quantum Chromodynamics (QCD), the Standard Model, direct photon and pion production, and the behavior of matter at high temperatures and densities. Her involvement in detector calibration, data acquisition, and online monitoring reflects a technical proficiency in handling complex experimental setups. Additionally, Dr. Abdulameer has explored solar particle events and their relationship with cosmic phenomena, indicating her multidisciplinary approach to research. Her experience with advanced programming tools like ROOT CERN and her participation in international workshops and scientific schools further support her commitment to advancing knowledge in particle physics through both theoretical insight and experimental precision.

Award and Honor🏆

Dr. Nour Jalal Abdulameer has been recognized for her academic and research excellence through several prestigious awards and honors. She was selected to participate in the highly competitive Asia-Europe-Pacific School of High-Energy Physics (AEPSHEP2022) in South Korea, reflecting her standing in the global physics community. Additionally, she has been invited to present her work at esteemed international conferences and workshops, including the Zimányi Winter School (2022 and 2023) in Hungary, the PHENIX training at Stony Brook University and Brookhaven National Laboratory in the USA, and the Initial Stages 2023 Conference in Copenhagen. These opportunities highlight her active involvement and contributions to the field of high-energy physics. Her continued participation in workshops on scientific programming, detector technologies, and particle physics reflects both her academic recognition and commitment to professional development. These accolades underscore her promise and potential as a leading young researcher in experimental physics and related interdisciplinary domains.

Research Skill🔬

Dr. Nour Jalal Abdulameer possesses a comprehensive set of research skills that make her a proficient and impactful scientist in the field of high-energy physics. She is highly skilled in data analysis, simulation, and detector calibration, with hands-on experience in working with particle detectors and large-scale experimental datasets from heavy-ion collisions. Her technical proficiency includes expertise in programming with C++ and using ROOT CERN for data visualization and statistical analysis, as well as LaTeX for scientific documentation. Dr. Abdulameer is adept at applying general research methodologies, modeling, and simulation techniques in experimental particle physics. Her work on the calibration of EMCal ToF and analysis of π0 and direct photon production demonstrates her deep understanding of experimental procedures and attention to precision. Additionally, her collaborative work with international teams, including contributions to technical and analysis notes, illustrates her ability to work effectively in multidisciplinary environments, managing complex research tasks with clarity and rigor.

Conclusion💡

Dr. Nour Jalal Abdulameer is a highly qualified and promising candidate for the Best Researcher Award, especially considering her strong academic progression, active involvement in global high-energy physics experiments, and interdisciplinary engagement. Her background reflects consistent growth, international collaboration, and technical competence, which aligns with the qualities expected from a top researcher.

Publications Top Noted✍️

“Disentangling Centrality Bias and Final-State Effects in the Production of High-pT Neutral Pions Using Direct Photon in d+Au Collisions at √sNN = 200 GeV”

This publication presents a simultaneous measurement of direct photon and neutral pion production in d+Au collisions at √sNN = 200 GeV, analyzing the effects of centrality bias and final-state interactions. The study finds that for minimum-bias collisions, the nuclear modification factor is consistent with unity, while a suppression is observed in the top 5% of events with the highest activity, suggesting possible final-state effects.

Srikumar Ghorui |Physics and Astronomy | Leading Innovations in Science Award

Prof. Srikumar Ghorui | Physics and Astronomy | Leading Innovations in Science Award

Scientific officer H at BARC, India

Dr. Srikumar Ghorui is a distinguished physicist with over 25 years of experience in thermal plasma research. He obtained his M.Sc. in Physics with a specialization in Radio Physics and Electronics from the University of Burdwan and completed the 40th batch of the BARC Training School before earning his Ph.D. from the University of Mumbai. He further advanced his research through postdoctoral studies at the University of Minnesota, USA. Currently, he is a Senior Professor at the Homi Bhabha National Institute and heads the Thermal Plasma Technologies Section at BARC’s Laser and Plasma Technology Division. Dr. Ghorui has significantly contributed to plasma-based technologies, notably developing an atmospheric pressure portable catalytic air plasma system for synthesizing aqueous nitrate and nitrite fertilizers. His research focuses on innovative plasma applications in environmental and industrial sectors, demonstrating his expertise in advancing scientific and technological frontiers in plasma physics.

Professional Profile 

Education

Prof. Srikumar Ghorui has an extensive academic background in physics and plasma research. He earned his Master of Science (M.Sc.) degree in Physics with a specialization in Radio Physics and Electronics from the University of Burdwan. Following this, he joined the Bhabha Atomic Research Centre (BARC) Training School as part of its 40th batch, gaining advanced knowledge in nuclear science and technology. He later pursued and successfully completed his Ph.D. from the University of Mumbai, focusing on thermal plasma applications. To further enrich his expertise, he undertook postdoctoral research at the University of Minnesota, USA, where he engaged in cutting-edge plasma technology research. His strong academic foundation and specialized training have equipped him with deep insights into plasma physics, enabling him to make significant contributions to the field. His educational journey reflects a commitment to scientific excellence and innovation in plasma-based technologies.

Professional Experience

Prof. Srikumar Ghorui has extensive professional experience in the field of plasma physics and thermal plasma applications. He began his career at the Bhabha Atomic Research Centre (BARC), where he gained expertise in plasma-based technologies and their industrial applications. Over the years, he has worked on various research projects involving plasma-assisted material processing, nanomaterials synthesis, and waste treatment using thermal plasma. His contributions extend to academia, where he has served as a professor and researcher, mentoring students and leading innovative research initiatives. He has collaborated with international institutions, including a postdoctoral tenure at the University of Minnesota, USA, where he worked on advanced plasma processing techniques. Throughout his career, Prof. Ghorui has published numerous research papers in reputed journals and participated in key conferences worldwide. His professional journey highlights his significant contributions to plasma science, technological advancements, and the development of sustainable solutions using plasma-based systems.

Research Interest

Prof. Srikumar Ghorui’s research interests primarily focus on plasma physics, thermal plasma applications, and their industrial and environmental implications. He is deeply involved in studying plasma-assisted material processing, including plasma arc welding, cutting, and coating techniques. His work also extends to the synthesis of nanomaterials using thermal plasma, exploring their applications in energy storage, catalysis, and advanced coatings. Additionally, he has conducted extensive research on plasma-based waste treatment technologies, aiming to develop sustainable methods for hazardous waste disposal and energy recovery. His interest in plasma diagnostics and modeling has led to significant contributions in understanding plasma behavior and optimizing industrial processes. Prof. Ghorui also explores interdisciplinary applications of plasma in biomedical engineering and environmental remediation. His research is driven by the goal of advancing plasma technologies for real-world applications, contributing to cleaner energy solutions, efficient manufacturing processes, and sustainable environmental management.

Award and Honor

Professor Srikumar Ghorui has made significant contributions to the field of thermal plasma technology over a career spanning more than 25 years. He currently serves as a senior professor at the Homi Bhabha National Institute in Mumbai and heads the Thermal Plasma Technologies Section within the Laser and Plasma Technology Division at the Bhabha Atomic Research Centre (BARC). His research has led to advancements in plasma science, including the development of an atmospheric pressure portable catalytic air plasma system for synthesizing aqueous nitrogen dioxide and nitrate fertilizers, for which he filed a patent in March 2024. In recognition of his expertise, Professor Ghorui has been invited to speak at various conferences, such as the TIMP 2021, where he addressed key challenges in thermal plasma technology. Additionally, he has been honored as an Outstanding Reviewer by the Journal of Physics D: Applied Physics in both 2022 and 2023.

Research Skill

Professor Srikumar Ghorui possesses extensive research skills in the field of thermal plasma technology, with a strong focus on plasma-assisted material synthesis, environmental applications, and industrial process enhancement. His expertise spans experimental and computational studies of high-temperature plasmas, including diagnostics, modeling, and applications in waste treatment, energy generation, and advanced material processing. He has successfully developed innovative plasma systems, such as an atmospheric pressure portable catalytic air plasma system for sustainable fertilizer production. His ability to integrate fundamental plasma physics with applied engineering solutions has led to numerous technological advancements and patents. As a senior researcher at the Bhabha Atomic Research Centre (BARC), he has demonstrated a strong analytical approach, problem-solving capabilities, and hands-on experience in designing and optimizing plasma-based processes. His contributions have been widely recognized through peer-reviewed publications, conference presentations, and awards, underscoring his excellence in advancing plasma science for industrial and societal applications.

Conclusion

Prof. Srikumar Ghorui is highly suitable for the Leading Innovations in Science Award. His pioneering contributions to plasma science, industrial applications, and technology transfer make him a strong candidate. Addressing minor areas like global collaboration and commercialization could further solidify his position as a world leader in plasma technology innovation.

Publications Top Noted

  • Thermodynamic and transport properties of two-temperature nitrogen-oxygen plasma

    • Authors: S. Ghorui, J.V.R. Heberlein, E. Pfender
    • Journal: Plasma Chemistry and Plasma Processing
    • Year: 2008
    • Citations: 95
  • Non-equilibrium modelling of an oxygen-plasma cutting torch

    • Authors: S. Ghorui, J.V.R. Heberlein, E. Pfender
    • Journal: Journal of Physics D: Applied Physics
    • Year: 2007
    • Citations: 86
  • Synthesis and characterization of Nd₂O₃ nanoparticles in a radiofrequency thermal plasma reactor

    • Authors: G.D. Dhamale, V.L. Mathe, S.V. Bhoraskar, S.N. Sahasrabudhe, S.D. Dhole, S. Ghorui
    • Journal: Nanotechnology
    • Year: 2016
    • Citations: 55
  • Thermodynamic and transport properties of two-temperature oxygen plasmas

    • Authors: S. Ghorui, J.V.R. Heberlein, E. Pfender
    • Journal: Plasma Chemistry and Plasma Processing
    • Year: 2007
    • Citations: 52
  • Experimental evidence of chaotic behavior in atmospheric pressure arc discharge

    • Authors: S. Ghorui, S.H. Sahasrabudhe, P.S.S. Murthy, A.K. Das, N. Venkatramani
    • Journal: IEEE Transactions on Plasma Science
    • Year: 2000
    • Citations: 48
  • Origin of fluctuations in atmospheric pressure arc plasma devices

    • Authors: S. Ghorui, A.K. Das
    • Journal: Physical Review E
    • Year: 2004
    • Citations: 44
  • Probing instabilities in arc plasma devices using binary gas mixtures

    • Authors: S. Ghorui, M. Vysohlid, J.V.R. Heberlein, E. Pfender
    • Journal: Physical Review E—Statistical, Nonlinear, and Soft Matter Physics
    • Year: 2007
    • Citations: 35
  • Strongly adherent Al₂O₃ coating on SS 316L: Optimization of plasma spray parameters and investigation of unique wear resistance behavior under air and nitrogen environment

    • Authors: V.C. Misra, Y. Chakravarthy, N. Khare, K. Singh, S. Ghorui
    • Journal: Ceramics International
    • Year: 2020
    • Citations: 33
  • Direct probing of anode arc root dynamics and voltage instability in a DC non-transferred arc plasma jet

    • Authors: S. Ghorui, N. Tiwari, K.C. Meher, A. Jan, A. Bhat, S.N. Sahasrabudhe
    • Journal: Plasma Sources Science and Technology
    • Year: 2015
    • Citations: 28
  • Stability and structures in atmospheric pressure DC non-transferred arc plasma jets of argon, nitrogen, and air

    • Authors: N. Tiwari, S. Bhandari, S. Ghorui
    • Journal: Physics of Plasmas
    • Year: 2018
    • Citations: 26
  • Theory of dynamic behavior in atmospheric pressure arc plasma devices. I. Theory and system behavior

    • Authors: S. Ghorui, A.K. Das
    • Journal: IEEE Transactions on Plasma Science
    • Year: 2004
    • Citations: 26
  • Thermodynamic and transport properties of nitrogen plasma under thermal equilibrium and non-equilibrium conditions

    • Authors: K.C. Meher, N. Tiwari, S. Ghorui
    • Journal: Plasma Chemistry and Plasma Processing
    • Year: 2015
    • Citations: 24
  • Unique erosion features of hafnium cathode in atmospheric pressure arcs of air, nitrogen, and oxygen

    • Authors: S. Ghorui, K.C. Meher, R. Kar, N. Tiwari, S.N. Sahasrabudhe
    • Journal: Journal of Physics D: Applied Physics
    • Year: 2016
    • Citations: 23
  • Collision integrals for charged-charged interaction in two-temperature non-equilibrium plasma

    • Authors: S. Ghorui, A.K. Das
    • Journal: Physics of Plasmas
    • Year: 2013
    • Citations: 23

Zhe Li | Physics and Astronomy | Best Researcher Award

Prof. Zhe Li | Physics and Astronomy | Best Researcher Award

Astroparticle Physics at Institute of High Energy Physics, China

Prof. Zhe Li, an associate professor at the Institute of High Energy Physics (IHEP), Chinese Academy of Sciences, is a distinguished researcher in high-energy astrophysics and cosmic ray physics. With a Ph.D. in Physics from Chengdu University of Technology and postdoctoral experience at IHEP, he has significantly contributed to the Large High Altitude Air Shower Observatory (LHAASO) project. His expertise spans high-energy gamma-ray astrophysics, solar gamma-ray emissions, and cosmic ray observations, combining experimental data analysis with advanced Monte Carlo simulations. Prof. Li has authored numerous high-impact publications, including papers in Physical Review Letters and Science Bulletin, addressing critical topics such as dark matter constraints and gamma-ray production mechanisms. A leader in his field, he combines technical innovation with a commitment to advancing astrophysical knowledge. Prof. Li’s work continues to shape our understanding of cosmic phenomena and inspire progress in particle and astrophysics research.

Professional Profile 

Education

Prof. Zhe Li has a solid academic foundation in physics, culminating in a Ph.D. from Chengdu University of Technology, where he specialized in high-energy physics. His doctoral research laid the groundwork for his future contributions to astrophysics and cosmic ray studies. Following his Ph.D., he pursued postdoctoral research at the Institute of High Energy Physics (IHEP), Chinese Academy of Sciences, from 2013 to 2015. During this period, he honed his expertise in particle physics, focusing on advanced simulation techniques and experimental data analysis. Prof. Li’s educational journey reflects his commitment to pushing the boundaries of knowledge in physics, particularly in the realms of cosmic ray and gamma-ray studies. His rigorous training and research experience have equipped him with the analytical and technical skills essential for his groundbreaking work in high-energy astrophysics and his leadership in large-scale scientific collaborations like the LHAASO project.

Professional Experience

Prof. Zhe Li has an illustrious professional career centered at the Institute of High Energy Physics (IHEP), Chinese Academy of Sciences, where he has served as an associate professor since 2015. He is a core member of the Large High Altitude Air Shower Observatory (LHAASO) project, one of the world’s most advanced facilities for cosmic ray and gamma-ray research. His role involves pioneering work in cosmic ray physics, encompassing data analysis, experimental observation, and Monte Carlo simulations. Prof. Li’s expertise extends to the simulation and observation of solar gamma-ray emissions, advancing our understanding of high-energy astrophysical phenomena. His leadership in managing complex research tasks and contributing to cutting-edge discoveries has cemented his reputation as a leading scientist in high-energy astrophysics. Prof. Li’s professional journey reflects a steadfast commitment to innovation and excellence, with his work significantly influencing the field of particle astrophysics on a global scale.

Research Interest

Prof. Zhe Li’s research interests lie at the forefront of high-energy astrophysics, with a particular focus on gamma-ray and cosmic ray phenomena. His work explores the astrophysics of high-energy gamma rays, unraveling the mechanisms behind their production and their role in the universe’s most energetic processes. He is deeply engaged in studying solar gamma-ray emissions, employing simulations and observations to investigate the intricate interplay between cosmic rays and solar magnetic fields. His interests also encompass cosmic ray observation, where he contributes to the development and application of experimental techniques and advanced data analysis methods. As a key researcher in the LHAASO project, Prof. Li’s interests extend to the discovery and characterization of ultra-high-energy cosmic rays, providing insights into particle acceleration and the universe’s most extreme environments. His interdisciplinary approach integrates theoretical modeling, experimentation, and computational simulation, driving advancements in the understanding of cosmic phenomena.

Award and Honor

Prof. Zhe Li has received recognition for his groundbreaking contributions to high-energy astrophysics and cosmic ray physics. His role as a key scientist in the Large High Altitude Air Shower Observatory (LHAASO) project has garnered international acclaim, highlighting his impact on the study of ultra-high-energy cosmic rays and gamma-ray emissions. His significant publications, including articles in renowned journals such as Physical Review Letters and Science Bulletin, have positioned him as a thought leader in his field. While specific formal awards or honors are not listed, his sustained academic excellence, leadership in major scientific collaborations, and influence in advancing astrophysical research underscore his merit. Prof. Li’s work continues to inspire the scientific community, and his contributions are widely regarded as instrumental in pushing the boundaries of particle astrophysics, earning him respect and recognition as a leader in his domain.

Conclusion

Zhe Li is an outstanding candidate for the Best Researcher Award. His deep knowledge in high-energy astrophysics, leadership in significant collaborations, and impactful publications place him at the forefront of his field. While there are areas for improvement, particularly in terms of public outreach and broadening his research applications, his scientific achievements and contributions to global research initiatives make him a deserving recipient of this award.

Publications Top Noted

  • Title: Data quality control system and long-term performance monitor of LHAASO-KM2A
    Authors: Cao, Z., Aharonian, F., Axikegu, Zou, Y.C., Zuo, X.
    Year: 2025
    Citations: 1
  • Title: Measurement of attenuation length of the muon content in extensive air showers from 0.3 to 30 PeV with LHAASO
    Authors: Cao, Z., Aharonian, F., Axikegu, Zou, Y.C., Zuo, X.
    Year: 2024
    Citations: 0
  • Title: Detection of Very High-energy Gamma-Ray Emission from the Radio Galaxy M87 with LHAASO
    Authors: Cao, Z., Aharonian, F., Axikegu, Zou, Y.C., Zuo, X.
    Year: 2024
    Citations: 0
  • Title: Evidence for particle acceleration approaching PeV energies in the W51 complex
    Authors: Cao, Z., Aharonian, F., Axikegu, Zou, Y.C., Celli, S.
    Year: 2024
    Citations: 0
  • Title: LHAASO-KM2A detector simulation using Geant4
    Authors: Cao, Z., Aharonian, F., An, Q., Zhu, K.J., Zuo, X.
    Year: 2024
    Citations: 2
  • Title: Stringent Tests of Lorentz Invariance Violation from LHAASO Observations of GRB 221009A
    Authors: Cao, Z., Aharonian, F., Axikegu, Zou, Y.C., Zuo, X.
    Year: 2024
    Citations: 0
  • Title: Constraints on Ultraheavy Dark Matter Properties from Dwarf Spheroidal Galaxies with LHAASO Observations
    Authors: Cao, Z., Aharonian, F., An, Q., Zhu, K.J., Zuo, X.
    Year: 2024
    Citations: 0
  • Title: Discovery of Very High Energy Gamma-Ray Emissions from the Low-luminosity AGN NGC 4278 by LHAASO
    Authors: Cao, Z., Aharonian, F., Axikegu, Zou, Y.C., Zuo, X.
    Year: 2024
    Citations: 4
  • Title: Optimization of performance of the KM2A full array using the Crab Nebula
    Authors: Cao, Z., Aharonian, F., An, Q., Zhu, K.J., Zuo, X.
    Year: 2024
    Citations: 3
  • Title: Simulating gamma-ray production from cosmic rays interacting with the solar atmosphere in the presence of coronal magnetic fields
    Authors: Li, Z., Ng, K.C.Y., Chen, S., Nan, Y., He, H.
    Year: 2024
    Citations: 1