Vandana Rathore | Particle Experiments | Women Researcher Award

Dr. Vandana Rathore | Particle Experiments | Women Researcher Award

Jagran Lakecity University | India

Dr. Vandana Rathore is an Associate Professor in Physics at Jagran Lakecity University, Bhopal, specializing in Condensed Matter Physics, Nanotechnology, Thin Films, and Diluted Magnetic Semiconductors. She holds a Ph.D. in Physics (2004) and has made notable contributions to Nanocrystalline Materials and Polymers through her extensive research. Dr. Rathore has successfully guided Ph.D. students and has a wealth of experience in both teaching and research.

👨‍🎓Profile

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Early Academic Pursuits 🎓

Dr. Rathore began her academic journey with a B.Sc. in Physics, Chemistry, and Mathematics from Himachal Pradesh University. She later earned a Gold Medal for Mathematics and Science in her B.Ed. from Jammu University, followed by a Gold Medal for Physics in her M.Sc. from Vikram University, Ujjain. Her passion for research led her to complete a Ph.D. focused on Positron Studies of Nanocrystalline Materials and Polymers at Vikram University.

Professional Endeavors 🔬

Dr. Rathore’s professional career spans over two decades, during which she has been actively engaged in teaching and research at Jagran Lakecity University. In addition to her academic responsibilities, she has organized conferences, chaired sessions, and served as a judge for major scientific events. Her interdisciplinary approach bridges the gap between physics and technology, demonstrating her adaptability in advanced research domains.

Contributions and Research Focus 🔍

Dr. Rathore’s research focus is primarily in Nanotechnology, Condensed Matter Physics, Thin Films, and Diluted Magnetic Semiconductors. She has published 38 research papers and holds several patents, which includes innovations like Smart Water Boiling Devices and AI-based smart glasses. She has been the principal investigator for projects funded by M.P. Council of Science & Technology and UGC-DAE CSR, further enriching the scientific community’s understanding of material properties.

Impact and Influence 🌍

Dr. Rathore’s work has significantly impacted the fields of nanomaterials and thin films, making her a prominent figure in scientific circles. Her patents and publications showcase her ability to merge theoretical knowledge with practical applications, enhancing both academic and industrial landscapes. Her guidance has helped shape the careers of multiple Ph.D. candidates, reinforcing her legacy as an educator and mentor.

Citations📚

A total of 135 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations – 135
  • h-index   –      6
  • i10-index –     5

Research Skills 🧠

Dr. Rathore’s research capabilities are multi-faceted, with expertise in materials characterization, nanomaterial synthesis, and computational modeling. She excels in optical and magnetic property analyses and has deep knowledge in semiconductor physics. Her technical proficiency allows her to guide complex research projects, ensuring innovative outcomes and real-world applications.

Teaching Experience 🎓

Dr. Rathore has taught a wide array of subjects in physics, ranging from digital electronics to nanotechnology. She is known for her engaging teaching style, blending traditional lectures with hands-on experiences, making complex concepts more accessible. Her role in preparing students for JEE, NEET, and NET exams underscores her proficiency in preparing students for national and international scientific challenges.

Awards and Honors 🏆

Dr. Rathore has received multiple accolades, including the Young Scientist Award from the M.P. Young Scientists Congress (2002), Best Researcher award from Jagran Lakecity University (2017), and Gold Medals for academic excellence in her M.Sc. and B.Ed. degrees. She was also nominated for the Young Scientists Award in Physics by the Indian Science Congress (2003), further highlighting her academic excellence.

Legacy and Future Contributions 🌱

Dr. Rathore’s legacy is defined by her pioneering research in nanotechnology and her mentorship of the next generation of scientists. Looking forward, she aims to expand her research in green energy storage and smart technologies. As a role model for women in science, Dr. Rathore’s future contributions promise to advance technological innovation while promoting gender equality in STEM fields.

Publications Top Notes

To study structural morphological and ferromagnetic behaviour of Sn1−xMnxO2 thin films
  • Authors: Rathore, V., Gupta, P., Sharma, K., Choudhary, R.J.
    Journal: Chemical Physics Letters
    Year: 2024
Investigation of electronic properties of Mn doped SnO2 thin film
  • Authors: Gupta, P., Rathore, V., Sahoo, S., Majumder, S.
    Journal: Vacuum
    Year: 2023
Fixed-Point Results for Mappings Satisfying Implicit Relation in Orthogonal Fuzzy Metric Spaces
  • Authors: Sonam, Rathore, V., Pal, A., Bhardwaj, R., Narayan, S.
    Journal: Advances in Fuzzy Systems
    Year: 2023
Investigation of micro-structural and transport properties of CdXCu1-XS thin films prepared by SPT
  • Authors: Rathore, V.
    Journal: Materials Today: Proceedings
    Year: 2023
An Optimal Solution to Multi-Goal Fuzzy Linear Programming Problems Using Elementary Transformations
  • Authors: Arti Shrivastava, Bharti Saxena, Vandana Rathore, Ramakant Bhardwaj
    Journal: Communications in Mathematics and Applications
    Year: 2024

 

 

 

Felix Lev | Particle physics and cosmology | Outstanding Scientist Award

Prof Dr. Felix Lev | Particle physics and cosmology | Outstanding Scientist Award

Physics/Mathematics, Independent Researcher, United States

Felix Lev is a prominent physicist specializing in quantum theory and mathematics. He earned his Doctorate in Physical and Mathematical Sciences in 1991 and has made significant contributions to foundational physics, particularly in understanding the particle-antiparticle dilemma and cosmological challenges. Lev is also a seasoned scientist with extensive experience in software development for integrated circuit design, bridging theoretical physics with practical applications. His influential book, “Finite Mathematics as the Foundation of Classical Mathematics and Quantum Theory,” showcases his groundbreaking research.

Profile:

Education:

Felix Lev holds a Doctorate in Physical and Mathematical Sciences from the Institute for High Energy Physics, awarded in 1991, where his dissertation focused on the many-body problem in relativistic quantum mechanics. Prior to that, he earned a Ph.D. in 1977 from the Institute of Theoretical and Experimental Physics in Moscow, with a dissertation on elastic scattering processes. He also completed his Master’s in Physics at the Moscow Institute for Physics and Technology in 1971. His educational background has laid a strong foundation for his research and contributions to theoretical physics and mathematics.

Professional Experience:

Lev has a distinguished career as a physicist and scientist. He served as a Senior Scientist at Artwork Conversion Software from 1999 to 2024, developing cutting-edge optimization algorithms for integrated circuit design while continuing his research in quantum theory. Previously, he was a Leading Scientist at the Joint Institute for Nuclear Research in Russia from 1992 to 1999 and held key roles at various research institutes throughout his career. He also has teaching experience, having lectured on topics like relativistic quantum mechanics at several prestigious institutions, including Santa Monica Community College and the Joint Institute for Nuclear Research.

Research focus:

Felix Lev’s research primarily centers on the foundations of quantum theory and mathematics. He is particularly interested in constructing quantum theory based on finite mathematics and exploring de Sitter symmetry’s implications. His work addresses fundamental issues such as the particle-antiparticle problem, the cosmological constant problem, and the challenges of cosmic acceleration. Lev’s approach proposes innovative solutions that redefine traditional views, suggesting that gravity may stem from the finiteness of nature. His publications and theories aim to reshape our understanding of quantum mechanics and its foundational principles, offering a fresh perspective on the universe’s mysteries.

Awards and Honors:

Felix Lev has received notable accolades throughout his career. In 1997, he was awarded the Heisenberg-Landau Grant, a prestigious personal grant from the Max Planck Institute of Physics and the Joint Institute for Nuclear Research, recognizing his exceptional contributions to theoretical physics. Additionally, he was honored as a Senior Scientist in Theoretical and Mathematical Physics in 1987 by the Presidium of the USSR Academy of Sciences. These awards reflect his significant impact on the fields of quantum theory and mathematics, emphasizing his status as a leading researcher.

Publication Top Notes:

  • Exact construction of the electromagnetic current operator in relativistic quantum mechanics
    Authors: FM Lev
    Year: 1995
    Citations: 80 📄
  • On the role of K∗ K intermediate states in OZI-rule violating reactions of antiproton annihilation
    Authors: D Buzatu, FM Lev
    Year: 1994
    Citations: 76 📄
  • Poincaré covariant current operator and elastic electron-deuteron scattering in the front-form Hamiltonian dynamics
    Authors: FM Lev, E Pace, G Salme
    Year: 2000
    Citations: 73 📄
  • Electromagnetic and weak current operators for interacting systems within the front-form dynamics
    Authors: FM Lev, E Pace, G Salme
    Year: 1998
    Citations: 70 📄
  • Relativistic quantum mechanics and its applications to few-nucleon systems
    Authors: FM Lev
    Year: 1993
    Citations: 67 📄
  • Deuteron magnetic and quadrupole moments with a Poincaré covariant current operator in the front-form dynamics
    Authors: FM Lev, E Pace, G Salme
    Year: 1999
    Citations: 55 📄
  • Finiteness of physics and its possible consequences
    Authors: F Lev
    Year: 1993
    Citations: 40 📄
  • Deep inelastic scattering and final state interaction in an exactly solvable relativistic model
    Authors: E Pace, G Salme, FM Lev
    Year: 1998
    Citations: 37 📄