Pabitra Ray | High energy physics | Best Researcher Award

Mr. Pabitra Ray | High energy physics | Best Researcher Award

Research Scholar at Tata Institute of Fundamental Research (TIFR), Mumbai, India

Pabitra Ray is a young and driven theoretical physicist with a keen interest in the fundamental principles that govern the universe. He completed his M.Sc. in Physics from the International Centre for Theoretical Sciences (ICTS-TIFR), Bengaluru, with first-class distinction, after earning his B.Sc. in Physics from Serampore College, University of Calcutta. His research pursuits lie in the areas of Quantum Field Theory, String Theory, Theoretical Condensed Matter Physics, and Mathematical Physics. He has participated in renowned international conferences such as Strings 2020 and KAWS 2022, enriching his academic foundation through discussions with global experts. Pabitra has also contributed as a teaching student for advanced theoretical courses at ICTS, reflecting his solid grasp of abstract physical concepts and teaching abilities. His rigorous academic journey, combined with his passion for deep theoretical insights, positions him as a promising young researcher in the evolving landscape of fundamental physics.

Author Profile

ORCID

Education

Pabitra Ray’s academic journey is marked by consistent excellence. He earned his Master of Science (M.Sc.) in Physics with first-class distinction from the International Centre for Theoretical Sciences (ICTS-TIFR), Bengaluru one of India’s premier institutions for advanced research in physics. Prior to this, he completed his Bachelor of Science (B.Sc.) in Physics with first class from Serampore College under the University of Calcutta, a foundational period that sparked his interest in theoretical physics. His strong performance in earlier academic stages includes first-division results in both Higher Secondary and Secondary Education from Champdani Nibaran Mukhopadhyay Vidyamandir, Hooghly, under the West Bengal education boards. This consistent academic record highlights his dedication to learning and mastery of complex physics concepts. Throughout his educational path, he has undertaken rigorous coursework, specialized research projects, and actively engaged in scholarly activities, laying a strong groundwork for a successful career in research.

Experience

Pabitra Ray has accumulated academic experience rooted in both coursework and teaching. During his time at ICTS-TIFR, he served as a Teaching Student for the specialized courses String Theory I (Reading) (Aug–Nov 2019) and String Theory II (Reading) (Jan–Apr 2020). These roles underscore his ability to articulate and disseminate intricate theoretical concepts. He has completed research-based course projects on topics such as Born-Infeld Electrodynamics, Calabi-Yau Compactifications, and String Gas Cosmology, which demonstrate his active involvement in foundational and contemporary theoretical inquiries.  His experience reflects a balance between academic rigor, collaborative learning, and knowledge sharing, essential for shaping a capable and adaptable researcher in high-energy theoretical physics.

Awards and Honors

Pabitra Ray has been recognized for academic excellence at multiple stages of his educational journey. Notably, he received the Kali Kinkar Sarkar Memorial Prize in 2018 for securing the highest marks in the B.Sc. Physics Honours program among male students at Serampore College. This award reflects his outstanding performance and dedication to physics during his undergraduate studies. Earlier, in 2014, he was honored with the Hooghly Zilla Parishad Merit Award for achieving the sixth rank among the top ten students in the Higher Secondary Examination in Hooghly district. These accolades underscore his longstanding commitment to academic excellence. In addition to his awards, his selection and participation in internationally reputed conferences and school such as Strings 2020 and the ICTP-PWF program testify to his growing stature as a young theoretical physicist. These honors serve not only as a testament to his achievements but also as encouragement for his future research ambitions.

Research Focus

Pabitra Ray’s research interests span some of the most mathematically rich and conceptually challenging areas of physics. In Quantum Field Theory, he explores the dynamics of particles as fields, unraveling their interactions at high-energy scales. His passion for String Theory drives him to understand particles as one-dimensional strings and study compactifications like Calabi-Yau manifolds and their implications for low-energy physics. In Theoretical Condensed Matter Physics, he investigates collective particle behavior and phase transitions in many-body systems under low-energy conditions, bridging quantum mechanics with emergent phenomena. Additionally, Pabitra has a keen interest in Mathematical Physics, where he explores deep links between abstract mathematics and physical laws. His academic background, coupled with advanced coursework and project-based learning, reinforces his capability to navigate between theory, mathematics, and physical intuition. His goal is to contribute to foundational questions in modern physics using rigorous mathematical tools and novel conceptual frameworks.

Publication

“Wave-form, memory and classical soft scalar theorems,” – Nuclear Physics B

Conclusion 

Pabitra Ray is a dedicated and intellectually capable emerging physicist with strong theoretical foundations in quantum field theory, string theory, and mathematical physics. His academic journey, teaching roles, and research engagement reflect both depth and potential. With further development in formal research output and interdisciplinary collaboration, he is well-poised to become a valued contributor to the field of fundamental physics. He is an excellent candidate for future academic and research recognitions.

 

Sudip Kumar Haldar | Quantum Technologies | Best Faculty Award

Dr. Sudip Kumar Haldar | Quantum Technologies | Best Faculty Award

Jaypee Institute of Information Technology | India

Dr. Sudip Kumar Haldar is an accomplished Assistant Professor in the Department of Physics and Material Science & Engineering at Jaypee Institute of Information Technology, Noida. With an extensive academic and research career, Dr. Haldar specializes in Theoretical Condensed Matter Physics, focusing on quantum gases and quantum information theory (QIC). He has contributed significantly to the field, with research spanning multiple prestigious institutions, including a post-doctoral stint at the University of Haifa, Israel, and the Physical Research Laboratory, India. His diverse roles have influenced various subfields of physics, particularly many-body dynamics and quantum technologies.

👨‍🎓Profile

Google scholar

Scopus

Orcid

Early Academic Pursuits 📚

Dr. Haldar’s academic journey began with his early education in Kolkata, India, where he excelled in science subjects. He completed his B.Sc. (Hons.) in Physics from Calcutta University in 2006, securing First Class results. He further pursued M.Sc. in Physics from the same institution in 2008, followed by success in prestigious exams like GATE (2009) and the CSIR-JRF (2009). Dr. Haldar’s academic excellence culminated in his Ph.D. from Calcutta University in 2015, where his research focused on the stability of Bose-Einstein condensates in finite optical traps.

Professional Endeavors 🌏

Dr. Haldar has worked in prestigious institutions worldwide. He was a Post-doctoral Research Assistant at the University of Haifa, Israel (2016-2019), where he studied many-body dynamics and excitation spectra in trapped ultra-cold atomic gases. He also worked at the Physical Research Laboratory (ISRO) in Ahmedabad (2014-2016), exploring thermalization dynamics in quantum systems using embedded random matrix theory. In his current position at Jaypee Institute of Information Technology, Dr. Haldar continues to push the frontiers of quantum technologies and quantum information science.

Contributions and Research Focus 🔬

Dr. Haldar’s research interests primarily revolve around Theoretical Condensed Matter Physics and Quantum Information Science (QIC). His work explores the dynamics of quantum gases, the interaction effects in ultracold bosonic systems, and the role of entanglement in quantum phase transitions. He is currently investigating quantum technologies for next-generation quantum computing. His notable publications include a paper on topological quantum phase transitions and significant contributions to the study of bosonic Josephson junctions and finite-range interactions.

Research Skills 🧠

Dr. Haldar possesses an advanced skill set in computational physics, with proficiency in LaTeX, Fortran95, C++, and HPC systems. His research often involves the use of high-performance computing (HPC) to simulate and analyze complex quantum dynamics. He regularly employs advanced computational techniques and methods such as Multiconfigurational Time-Dependent Hartree (MCTDH) for quantum simulations, contributing significantly to his field’s computational modeling advancements.

Teaching Experience 🎓

As an Assistant Professor, Dr. Haldar has taught various courses in Physics and Material Science. He has also been actively involved in conducting workshops and training sessions for students and faculty. Notably, he was a resource person for the One Week Workshop on Scientific & Technical Research Scripting Using LaTeX at SRM University in 2023. His teaching pedagogy emphasizes outcome-based education, incorporating interactive learning to inspire students in the fundamentals of theoretical physics.

Awards and Honors 🏆

Dr. Haldar’s excellence in research and academia has been recognized through various awards and fellowships. He received the CSIR Junior Research Fellowship (2010) based on his performance in the UGC-CSIR NET exam. He has been a Life Member of the Indian Society of Atomic & Molecular Physics (ISAMP). His post-doctoral fellowships include prestigious positions such as the Institute Post-Doctoral Fellowship from the University of Haifa and the BK21 Plus Postdoctoral Fellowship under the Brain Korea 21 Program.

Citations📚

A total of 165 citations for his publications, demonstrating the impact and recognition of his research within the academic community.

  • Citations –  165
  • h-index   –      8
  • i10-index –     7

Legacy and Future Contributions 🌱

Dr. Haldar’s work continues to inspire students and fellow researchers in the fields of quantum physics and condensed matter theory. His research on quantum dynamics, BECs, and quantum phase transitions has the potential to contribute significantly to the development of quantum computing technologies. With ongoing projects like the DST SERB funded project on quantum technologies, Dr. Haldar is at the forefront of the future of quantum science in India and globally. His legacy will likely be marked by his pivotal role in advancing quantum systems and theoretical physics.

Publications Top Notes

Many-Body Effects in a Composite Bosonic Josephson Junction

  • Authors: Sudip Kumar Haldar, Anal Bhowmik
    Journal: Atoms, 2024

Predicting a Topological Quantum Phase Transition from Dynamics via Multisite Entanglement

  • Authors: Leela Ganesh Chandra Lakkaraju, Sudip Kumar Haldar, Aditi Sen (De)
    Journal: Physical Review A, 2024

Impact of the Transverse Direction on the Many-Body Tunneling Dynamics in a Two-Dimensional Bosonic Josephson Junction

  • Authors: Anal Bhowmik, Sudip Kumar Haldar, Ofir E. Alon
    Journal: Scientific Reports, 2020

Relaxation of Shannon Entropy for Trapped Interacting Bosons with Dipolar Interactions

  • Authors: Sangita Bera, Sudip Kumar Haldar, Barnali Chakrabarti, Andrea Trombettoni, V. K. B. Kota
    Journal: The European Physical Journal D, 2020

Many-Body Quantum Dynamics of an Asymmetric Bosonic Josephson Junction

  • Authors: Sudip Kumar Haldar, Ofir E. Alon
    Journal: New Journal of Physics, 2019

 

 

Ali Homid | Quantum Field Theory | Best Researcher Award

Assoc. Prof. Dr. Ali Homid | Quantum Field Theory | Best Researcher Award

Faculty of Science at Al-Azhar University, Egypt

Dr. Ali Hassan Ali Homid is an Assistant Professor of Mathematics and Theoretical Physics at the Faculty of Science, Al-Azhar University in Assiut, Egypt. Born on February 1, 1986, he specializes in Quantum Mechanics and Quantum Information Theory. Dr. Homid earned his PhD in Applied Mathematics in 2020, focusing on quantum algorithms and their applications in artificial quantum systems. Over the years, he has built an impressive research profile, collaborating with leading institutions such as Zewail City of Science and Technology and the Academy of Scientific Research and Technology. As a researcher and educator, Dr. Homid combines cutting-edge theoretical research with teaching, focusing on the physical realization of quantum gates and systems for quantum computation.

Profile🎓

Early Academic Pursuits 📚

Dr. Ali Hassan Ali Homid’s academic journey began at Al-Azhar University, where he earned his B.Sc. in Mathematics in 2008, graduating with distinction. His passion for mathematics and theoretical physics led him to pursue higher studies, and he continued at Assiut University where he completed his M.Sc. in Applied Mathematics (Quantum Mechanics) in 2014. His early academic pursuits were driven by a fascination with the fundamental principles of quantum mechanics, which laid the foundation for his advanced research. Throughout his studies, Dr. Homid consistently excelled, earning recognition as a top student and receiving the Award for Distinction from Al-Azhar University for four consecutive years during his undergraduate education. These early academic achievements highlight his exceptional abilities and deep interest in quantum theory and mathematical modeling.

Professional Endeavors 🌍

Dr. Ali Hassan Ali Homid’s professional journey spans over a decade of research and teaching in the fields of quantum mechanics and theoretical physics. He began his career as a scientist in Quantum Information and Quantum Computation at the Academy of Scientific Research and Technology, Cairo, from 2010 to 2012. During this period, he contributed to the development of quantum algorithms and explored quantum information theory. Dr. Homid’s professional growth continued with a role as a Research Assistant at Zewail City of Science and Technology, where he worked from 2015 to 2017, collaborating on advanced research in quantum physics. Since 2012, he has been part of the Mathematics Department at Al-Azhar University, where he combines teaching with cutting-edge research. His ongoing role as a Research Volunteer at Zewail City further showcases his commitment to advancing the field.

Contributions and Research Focus 🔬

Dr. Ali Hassan Ali Homid’s research contributions are centered around the fields of quantum information theory, quantum computation, and the physical realization of quantum algorithms. His PhD thesis, “Realization of Some Quantum Algorithms Using Artificial Quantum Systems,” presents innovative techniques to develop quantum circuits and explore their applications in artificial systems, aligned with current experimental results. His Master’s thesis focused on the physical implementation of quantum gates, offering practical solutions to theoretical challenges in quantum computing. Dr. Homid has also been involved in several projects aimed at enhancing quantum information protocols and advancing the field of quantum algorithms. His work is not just theoretical but seeks to bridge the gap between conceptual frameworks and experimental applications in the quantum computing domain.

Impact and Influence 🌟

Dr. Ali Hassan Ali Homid has made a significant impact on the field of quantum mechanics and quantum computing, especially in Egypt and the wider global scientific community. His work on quantum algorithms and the development of new quantum circuits has earned him recognition in international academic circles, and his publications are regularly cited in high-impact journals. Dr. Homid’s contributions extend beyond research, as he actively participates in peer-reviewing for prominent scientific journals such as the Revista Mexicana de Física and New Journal of Physics, further solidifying his influence. His academic citations and research collaborations highlight the relevance and importance of his work. By advancing the understanding of quantum systems and their applications in real-world technologies, Dr. Homid is contributing to shaping the future of quantum computing and its technological evolution.

Academic Cites and Recognition 🏅

Dr. Ali Hassan Ali Homid’s scholarly work is widely recognized, and his research has garnered significant attention in the academic community. His Google Scholar profile showcases his contributions to quantum information science, with multiple citations of his work in prestigious journals and conferences. Dr. Homid’s influence extends through his work on the development of quantum algorithms and artificial quantum systems. His Scopus and ORCID profiles further demonstrate his standing within the scientific community, where his publications contribute to advancing quantum computing and its theoretical and practical applications. His research, particularly in the area of quantum circuits and quantum bits, has led to improvements in the design and realization of quantum algorithms, cementing his place as a thought leader in the quantum mechanics field.

Technical Skills 💻

Dr. Ali Hassan Ali Homid is highly proficient in a range of technical and computational tools essential for his research in quantum mechanics and applied mathematics. His expertise includes programming in Matlab and Mathematica, two widely used software platforms for mathematical modeling and simulation. Additionally, he is skilled in LaTeX for academic writing, as well as Microsoft Office and PowerPoint for data presentation and communication. His technical capabilities extend to the Linux and Windows operating systems, facilitating a versatile approach to his computational work. Dr. Homid’s combination of advanced programming skills and deep knowledge of quantum theory equips him to tackle complex problems in quantum information theory and computational physics.

Teaching Experience 📖

Dr. Ali Hassan Ali Homid has been an educator and mentor for over a decade. Since 2012, he has served as a lecturer in the Mathematics Department at Al-Azhar University, where he teaches courses on mathematical modeling, applied mathematics, and quantum mechanics. His teaching style integrates theoretical knowledge with practical applications, inspiring students to engage with complex concepts in quantum physics. Dr. Homid’s ability to present abstract ideas in a comprehensible way has earned him a reputation as a dedicated educator. Beyond his formal teaching, he actively contributes to the development of academic curricula and research programs, fostering a collaborative environment that nurtures young scientists interested in theoretical and experimental physics.

Legacy and Future Contributions 🔮

Dr. Ali Hassan Ali Homid’s legacy lies in his unwavering commitment to advancing the field of quantum mechanics through both teaching and research. His innovative work on quantum algorithms and artificial systems is poised to play a significant role in the future development of quantum computing technologies. Dr. Homid’s focus on creating practical solutions for quantum systems aligns with the global trend of advancing quantum technologies that could revolutionize industries like cryptography, telecommunications, and data processing. As he continues his research, Dr. Homid is expected to make further contributions that will shape the future of quantum information science, ensuring that his impact is felt for years to come. His dedication to the advancement of scientific knowledge and quantum technologies positions him as a key figure in the global scientific community.

Top Noted Publications📖

Which spin ladders are the most effective at transferring entanglements: two-legs or honeycombs!?
  • Authors: Motamedifar, M.; Abbasi, M.; Golshani, M.; Mohamed, A.-b. a.; Homid, Ali H.
    Journal: The European Physical Journal Plus
    Year: 2024
Probing the engineering squeezing and phase phenomena in defective light crystals
  • Authors: A.H. Homid; H. Bakry; M. Abdel-Aty; N. Zidan; M. Qasymeh
    Journal: Physica B: Condensed Matter
    Year: 2024-10
Synchronous observation of information loss generating among ions in a long-range Paul trap chain
  • Authors: Homid, A. H.; Mohamed, A.-b. a.; Abdel-Aty, M.
    Journal: Applied Physics B
    Year: 2023
Rashba control to minimize circuit cost of quantum Fourier algorithm in ballistic nanowires (vol 383, pg 1247, 2019)
  • Authors: Homid, A. H.; Sakr, M. R.; Mohamed, A.-B. A.; Abdel-Aty, M.; Obada, A.-S. F.
    Journal: Physics Letters A
    Year: 2022
Robust thermal correlations induced by spin-orbit interactions
  • Authors: Khedr, Ahmad N.; Homid, Ali H.; Mohamed, Abdel-Baset A.; Abdel-Aty, Abdel-Haleem; Eleuch, Hichem; Tammam, Mahmoud; Abdel-Aty, Mahmoud
    Journal: Results in Physics
    Year: 2022
Efficient quantum gates and algorithms in an engineered optical lattice
  • Authors: Homid, A. H.; Abdel-Aty, M.; Qasymeh, M.; Eleuch, H.
    Journal: Scientific Reports
    Year: 2021
Efficient realization of quantum search algorithm using quantum annealing processor with dissipation: erratum
  • Authors: A. H. Homid; A. Abdel-Aty; M. Abdel-Aty; A. Badawi; A.-S. F. Obada
    Journal: Journal of the Optical Society of America B
    Year: 2021-03-01

 

 

 

V. Sabari | Quantum Field Theory | Best Researcher Award

Dr. V. Sabari | Quantum Field Theory | Best Researcher Award

Research Coordinator, Assistant Prodessor of Physics at Marudhar Kesari Jain College for Women, Vaniyambadi, India

Dr. V. Sabari is an accomplished academic and researcher specializing in Physics with a focus on crystallography, nanoscience, and computational techniques. He holds a Ph.D. in Physics from Presidency College, Chennai, and has published several books and patents in his field. Dr. Sabari has worked in diverse academic environments, holding assistant professorships at various institutions, including Women’s Christian College and Vel Tech University. Currently, he is serving as a faculty member at Marudhar Kesari Jain College for Women, Vaniyambadi. With a strong commitment to research and education, Dr. Sabari has guided numerous M.Sc. and Ph.D. students in their academic journeys. His work is recognized nationally and internationally, with ongoing projects funded by the DST-FIST.

🎓Profile

🧑‍🎓 Early Academic Pursuits

Dr. V. Sabari embarked on his academic journey with a strong foundation in Physics. He completed his Bachelor of Science (B.Sc.) in Physics from Govt. Thirumagal Mills College, Gudiyattam in 2006 with an impressive 78.48%. Building on this, he pursued his Master of Science (M.Sc.) in Physics from Govt. Muthurangam Arts College, Vellore in 2008 with a commendable 73.60%. To further deepen his expertise, Dr. Sabari earned his M.Phil. in Physics from Queen Mary’s College, University of Madras in 2008. His thirst for knowledge led him to pursue a Ph.D. in Physics from Presidency College, Chennai under the University of Madras, completing it in 2015 with First Class honors. This rigorous academic training laid the foundation for his future contributions in Nanoscience, Crystallography, and Computational Physics.

🧑‍🏫 Professional Endeavors

Dr. Sabari’s professional career reflects his dedication to both teaching and research. His teaching career began in 2014 when he joined Women’s Christian College, Chennai as an Assistant Professor. He continued to build his academic profile, working as an Assistant Professor in various prestigious institutions like Vel Tech University and Sree Ambiraami Arts & Science College. Since 2018, he has been serving as an Assistant Professor at Marudhar Kesari Jain College for Women, Vaniyambadi, where he has made substantial contributions to both teaching and research administration. As the Head of the PG and Research Department of Physics, Dr. Sabari has shown outstanding leadership and commitment to fostering academic excellence.

🔬 Contributions and Research Focus

Dr. Sabari’s research interests primarily lie in Crystallography, Density Functional Theory (DFT), Nanoscience, and Computational Modeling. Over the years, he has successfully guided 15 M.Sc. students on projects related to these fields and is currently supervising four Ph.D. scholars. His involvement in DST-FIST 2023 and his role as a Co-Investigator in the Level-A R&D Infrastructure project demonstrate his leadership in fostering research collaborations. Furthermore, his groundbreaking work on nanoparticles-based compositions and antimicrobial nanofiber masks has been recognized through multiple patents published in recent years. This work showcases his interdisciplinary approach and ability to bridge the gap between theoretical research and practical applications, particularly in healthcare and materials science.

🌍 Impact and Influence

Dr. Sabari’s research has not only contributed to the academic world but also holds potential for significant real-world applications. His patents, including one on “Nanoparticles-Based Compositions” and another on the reusability of antimicrobial nanofiber masks, point to the innovative edge of his work. He has also influenced the academic community through his textbooks on Physics, Bio-Physics, and Operation Research, which are essential references for many students. His role as a member of editorial boards and contributor to international journals further strengthens his influence on the global stage. His involvement in Guinness World Records for editing the “Thickest Book in the World” highlights his multifaceted contributions to both academic and global recognition.

📚 Academic Cites and Research Leadership

Dr. Sabari’s influence extends beyond his published works and patents. As a research coordinator and academic leader, he has actively contributed to faculty development programs, conferences, and seminars. He has also been a pivotal member of academic councils, showcasing his leadership skills in academic governance. His academic prowess is reflected in the guidance of Ph.D. scholars, with research topics in computational physics, nanotechnology, and molecular interactions. His ongoing research on “Computational Framework for Predictive Modeling of Molecular Interactions Using AI” is a step towards integrating cutting-edge technologies into traditional scientific methods.

💻 Technical Skills

Dr. Sabari’s technical expertise is vast and varied, ranging from small molecule crystallography to nanoscience and computational modeling. He has hands-on experience with WinGX, ORTEP, and PLATON software for structure analysis and crystallography. His proficiency extends to Density Functional Theory (DFT), Hirshfeld surface analysis, and Docking Studies using GLIDE and AutoDock. These skills underscore his capabilities in computational research, which complements his experimental work in nanoscience. His fluency with MS Office, C-programming, and Linux systems enables him to handle diverse research tasks with ease, further enhancing his productivity.

👩‍🏫 Teaching Experience

Dr. Sabari’s teaching experience spans over a decade, during which he has shaped the educational journey of numerous students in Physics. He has been involved in the design and delivery of courses in Allied Physics, Bio-Physics, Classical Mechanics, and more. As a dedicated Assistant Professor and Head of Department, he has mentored both undergraduate and postgraduate students. His student-centered approach, combined with his involvement in course coordination and faculty development programs, has created a vibrant and intellectually stimulating learning environment. Dr. Sabari’s teaching extends beyond the classroom, with his active participation in online short-term courses and faculty development programs aimed at improving academic research writing and ethical practices in academia.

🏅 Legacy and Future Contributions

Dr. Sabari has built a lasting legacy through his research publications, book authorship, and patents that push the boundaries of Physics and Nanotechnology. His ongoing efforts to guide future scholars and his active involvement in institutional development promise continued success. As a visionary educator and researcher, Dr. Sabari’s future contributions are poised to influence the fields of computational physics, nano-science, and materials science. His forward-thinking approach to interdisciplinary research and academic leadership is likely to inspire future generations of scientists and educators, leaving an indelible mark on the academic world.

📖Top Noted Publications

Synthesis, Characterization, and Comparison of Pure Zinc Oxide and Magnesium‐Doped Zinc Oxide Nanoparticles and their Application on Ethanol Sensing Activities

  • Authors: N Kangathara, V Sabari, L Saravanan, S Elangovan
  • Journal: Journal of Nanomaterials
  • Year: 2022

Effect of Cu doping with varying pH on photocatalytic activity of ZnO nanoparticles for the removal of organic pollutants

  • Authors: A Ashwini, L Saravanan, V Sabari, M Astalakshmi, N Kanagathara
  • Journal: Inorganic Chemistry Communications
  • Year: 2023

Visible light photocatalysis enhancement by Ag3PO4 decorated with RuO2 nanoparticles

  • Authors: A Ashwini, V Sabari, M Gomathi, C Esther Jeyanthi, L Saravanan, S Elangovan, N Kanagathara
  • Journal: Physica B: Condensed Matter
  • Year: 2024

Temperature-dependent dielectric investigation of dual-ions doped hydroxyapatite nanoparticles

  • Authors: S Helen, L Saravanan, V Sabari, K Senthilkumar, N Kanagathara
  • Journal: Inorganic Chemistry Communications
  • Year: 2023

Quantum chemical and MD investigations on molecular structure, vibrational (FT-IR and FT-Raman), electronic, thermal, topological, molecular docking analysis of 1-carboxy-4 …

  • Authors: CP Devipriya, S Deepa, J Udayaseelan, RaviKumar Chandrasekaran, M Aravinthraj, V Sabari
  • Journal: Chemical Physics Impact
  • Year: 2024