Ranjita Kumari Mohapatra | High energy physics | Best Researcher Award

Assist. Prof. Dr. Ranjita Kumari Mohapatra | High energy physics | Best Researcher Award

Rajdhani College Bhubaneswar | India

Dr. Ranjita Kumari Mohapatra is an Assistant Professor at Rajdhani College in Bhubaneswar, Odisha, specializing in the field of Physics. Her academic journey spans a rich history of rigorous research, teaching, and contributions to the scientific community. With over a decade of experience, Dr. Mohapatra has made significant strides in the realm of relativistic heavy-ion collisions, strongly interacting matter, and transport coefficients.

👨‍🎓Profile

Google scholar

Scopus

Early Academic Pursuits 🎓

Dr. Mohapatra’s academic foundation began with her M.Sc. in Physics from Utkal University (2004), followed by a Post-M.Sc. program at the Institute of Physics, Bhubaneswar (2005-2006). Her Ph.D. research, titled Investigating Formation and Evolution of Z(3) Walls and Flow Anisotropies in Relativistic Heavy Ion Collisions, was completed at the Institute of Physics in 2012 under the guidance of Prof. Ajit M. Srivastava.

Professional Endeavors 🏢

Dr. Mohapatra’s career trajectory includes post-doctoral fellowships at prestigious institutions such as the Physical Research Laboratory (2012-2014), IIT Bombay (2018-2019), and Banki College (2019-2023). Since February 2023, she has been serving as an Assistant Professor in the Department of Physics at Rajdhani College. Over the years, she has been involved in cutting-edge research and has become a respected educator, imparting knowledge to both undergraduate and postgraduate students.

Contributions and Research Focus 🔬

Dr. Mohapatra’s research focuses on the equation of state of strongly interacting matter, conserved charge fluctuations, and calculation of transport coefficients in relativistic heavy ion collisions. She is currently spearheading an ongoing project funded by the OURIIP seed fund with a grant of Rs. 402,000/-. Her earlier works, such as Z(3) walls and the acoustic oscillations in heavy-ion collisions, have significantly impacted the understanding of QGP (Quark-Gluon Plasma) dynamics and other key phenomena in nuclear physics.

Impact and Influence 🌍

Dr. Mohapatra’s contributions to high-energy nuclear physics are invaluable. Her work on flow anisotropies and magnetic fields in relativistic heavy-ion collisions, as well as her studies on quark-hadron transitions, have had a profound influence on the field, advancing the understanding of strongly interacting matter. Her research continues to shape the future of QCD (Quantum Chromodynamics) and phase transitions in the early universe.

Academic Citations 📑

Dr. Mohapatra has authored numerous influential publications, with more than 19 research papers in renowned journals such as Phys. Rev. C, Phys. Rev. D, and Nucl. Phys. A. Key publications, like her work on inverse magnetic catalysis and transport coefficients, have been cited widely and contribute to the ongoing discourse in nuclear physics. Her work continues to inspire researchers in the fields of quantum chromodynamics and particle physics.

Research Skills 🧠

Dr. Mohapatra’s research expertise includes relativistic hydrodynamics, QCD phase diagram, magnetic catalysis, transport coefficients, and fluctuations in heavy-ion collisions. She has developed key models for understanding conserved charge fluctuations and the influence of magnetic fields on hadron resonance gas models, with significant applications in astrophysics and nuclear physics. Her analytical and computational skills are essential in advancing the field.

Teaching Experience 📚

Dr. Mohapatra’s teaching career spans several prestigious institutions. She has served as a tutor and teaching assistant for undergraduate and postgraduate courses at IIT Bombay, where she taught subjects like nuclear theory and BTech lab courses. At Banki College and Rajdhani College, she has taught undergraduate students in Physics. With a strong pedagogical approach, she instills deep knowledge of nuclear physics and high-energy physics among her students.

Awards and Honors 🏅

Dr. Mohapatra’s scholarly achievements have earned her significant recognition. She was awarded the OURIIP Seed Fund Research Grant (2021) for her innovative research on strongly interacting matter. Her work has also been acknowledged at national and international conferences, where she has presented her research and contributed to advancing the understanding of heavy-ion collisions.

Legacy and Future Contributions 🌱

As an educator and researcher, Dr. Mohapatra continues to build a lasting legacy through her research contributions and teaching practices. Her future goals include furthering the study of QCD matter, phase transitions, and transport coefficients. Dr. Mohapatra envisions her research aiding in precision measurements and experimental predictions that could revolutionize the understanding of nuclear matter in extreme conditions.

Publications Top Notes

QCD phase diagram and the finite volume fireball: A model study
  • Authors: Shaikh, A., Mohapatra, R.K., Datta, S.
    Journal: Nuclear Physics A
    Year: 2025
Finite Volume Effects on the QCD Chiral Phase Transition Using NJL Model
  • Authors: Shaikh, A., Mohapatra, R.K., Datta, S.
    Journal: Springer Proceedings in Physics
    Year: 2024
Axion mass in a hot QCD plasma
  • Authors: Das, A., Abhishek, A., Mohapatra, R.K., Mishra, H.
    Journal: Proceedings of Science
    Year: 2023
Diffusion matrix associated with the diffusion processes of multiple conserved charges in a hot and dense hadronic matter
  • Authors: Das, A., Mishra, H., Mohapatra, R.K.
    Journal: Physical Review D
    Year: 2022
In Medium Properties of Axion Within a Polyakov Loop Enhanced Nambu-Jona-Lasinio Model
  • Authors: Mohapatra, R.K., Abhishek, A., Das, A., Mishra, H.
    Journal: Springer Proceedings in Physics
    Year: 2022

 

 

 

Kuantay Boshkayev | High-Energy Astrophysics | Best Researcher Award

Prof. Kuantay Boshkayev | High-Energy Astrophysics | Best Researcher Award

Professor at Al-Farabi Kazakh National University, Kazakhstan

Kuantay Boshkayev is a distinguished physicist specializing in relativistic astrophysics. Born on December 4, 1981, in Almaty, Kazakhstan, he has dedicated his career to advancing scientific knowledge in theoretical physics. A professor at Al-Farabi Kazakh National University (KazNU), he combines his teaching and research roles, mentoring students and leading innovative research projects. Fluent in Kazakh, Russian, and English, Kuantay is recognized for his contributions to the field and his active involvement in scientific communities both locally and internationally.

🎓Profile

📚 Early Academic Pursuits

Kuantay Boshkayev embarked on his academic journey at Al-Farabi Kazakh National University (KazNU), where he earned a Bachelor’s degree in Physics (1999-2004) and a Master’s degree in Physics (2004-2006). His early research focused on relativistic equations of motion, culminating in a Master’s thesis that addressed discrepancies in these equations. He further advanced his education with two Ph.D. degrees: one in Theoretical Physics from KazNU (2009) and another in Relativistic Astrophysics from Sapienza University of Rome (2012), where he studied rotating white dwarfs and neutron stars under the guidance of prominent scholars.

💼 Professional Endeavors

Currently, Kuantay serves as a Full Professor at KazNU and Chief Research Associate at the National Nano Laboratory of Open Type (NNLOT). His professional trajectory includes roles such as Associate Professor and Leading Research Associate, contributing significantly to both academic and research settings. Throughout his career, Kuantay has held various teaching and research positions, reflecting his deep commitment to physics and education.

🔬 Contributions and Research Focus

Kuantay Boshkayev’s research primarily revolves around relativistic astrophysics, exploring dark matter, black holes, and the dynamics of accretion disks. His work has produced impactful publications in esteemed journals, addressing complex phenomena in the universe. Notable research includes analyzing dark matter profiles in galaxies and studying the properties of rotating stars, demonstrating his expertise and dedication to advancing scientific understanding.

🌟 Impact and Influence

Kuantay’s contributions to education and research have earned him multiple accolades, including the “Kurmet Diploma” and the “Best Researcher-2021” fellowship from the Ministry of Education and Science of Kazakhstan. His work not only enriches academic discourse but also inspires students and colleagues, establishing him as a respected figure in the scientific community.

📖 Academic Citations

His extensive list of publications includes significant papers in journals such as Physical Review D, MNRAS, and Astrophysical Journal, reflecting his contributions to high-impact research. Kuantay’s work on quasiperiodic oscillations and accretion disk properties has been widely cited, further solidifying his influence in the field of astrophysics.

💻 Technical Skills

Kuantay is proficient in various computer skills, including Microsoft Windows, Mac OS, and scientific software such as Mathematica and LaTeX. His technical expertise enables him to employ advanced computational techniques in his research, enhancing the depth and accuracy of his findings.

👩‍🏫 Teaching Experience

With over 15 years of teaching experience, Kuantay has instructed courses in Electrodynamics, Special and General Relativity, and Mathematical Physics at KazNU. He has played a pivotal role in mentoring undergraduate and postgraduate students, shaping the future generation of physicists through rigorous academic training.

🌈 Legacy and Future Contributions

Kuantay Boshkayev aims to continue his legacy of excellence in research and education. His future contributions are expected to further explore the complexities of astrophysics, particularly in understanding dark matter and black holes. By inspiring students and collaborating with peers, he strives to make lasting impacts in both academia and the broader scientific community.

📖Publication Top Notes

Accretion disks properties around regular black hole solutions obtained from non-linear electrodynamics
  • Authors: Yergali Kurmanov, Kuantay Boshkayev, Talgar Konysbayev, Orlando Luongo, Nazym Saiyp, Ainur Urazalina, Gulfeiruz Ikhsan, Gulnara Suliyeva
    Publication Year: 2024
Quasi-periodic oscillations in rotating and deformed space–times
  • Authors: K. Boshkayev, T. Konysbayev, Ye Kurmanov, M. Muccino, H. Quevedo
    Publication Year: 2024
 Numerical analyses of M31 dark matter profiles
  • Authors: Kuantay Boshkayev, Talgar Konysbayev, Yergali Kurmanov, Orlando Luongo, Marco Muccino, Hernando Quevedo, Gulnur Zhumakhanova
    Publication Year: 2024

 

Numerical analysis of quasiperiodic oscillations with spherical spacetimes
  • Authors: Kuantay Boshkayev, Orlando Luongo, Marco Muccino
    Publication Year: 2023
On the growth of supermassive black holes formed from the gravitational collapse of fermionic dark matter cores
  • Authors: C. R. Argüelles, K. Boshkayev, A. Krut, G. Nurbakhyt, J. A. Rueda, R. Ruffini, J. D. Uribe-Suárez, R. Yunis
    Publication Year: 2023