T. Lakshmana Rao Tangi | Condensed Matter | Best Researcher Award

Assoc. Prof. Dr. T. Lakshmana Rao Tangi | Condensed Matter | Best Researcher Award

Associate Professor at Vignan’s Institute of technology (A), India

Dr. T. Lakshmana Rao is an accomplished physicist and academic with a decade-long career spanning teaching, research, and institutional development. His core expertise lies in Experimental Condensed Matter Physics and Material Science, with particular focus on nanoparticle synthesis, magnetic materials, and multiferroics. Dr. Rao has demonstrated consistent academic excellence through national-level achievements, government-funded fellowships, and high-impact publications in SCI-indexed journals. He is currently serving as an Associate Professor (Selection Grade) at Vignan’s Institute of Information Technology, Visakhapatnam, where he actively contributes to academic coordination, student mentoring, and institutional innovation. His scholarly work has significantly advanced the understanding of LaFeO₃-based nanoparticles and their magnetic and electrical behavior, contributing to potential applications in sensors and quantum devices. A dedicated mentor and academic leader, Dr. Rao bridges fundamental research with real-world application, nurturing the next generation of physicists while contributing meaningfully to the broader scientific community in India and beyond.

Professional Profile 

Google Scholar | ORCID Profile 

Education 

Dr. Rao holds a Ph.D. in Physics & Astronomy from the National Institute of Technology (NIT), Rourkela, awarded in January 2021. His doctoral thesis explored substitution-induced changes in the structural, magnetic, and electrical properties of LaFeO₃ nanoparticles, a key area in materials research. Prior to his Ph.D., he completed an M.Tech in Metallurgical & Materials Engineering from NIT Rourkela in 2012 and an M.Sc. in Physics from Andhra University in 2009. His academic journey began with a B.Sc. (Mathematics, Physics, Geology) from Maharaja Degree College, Vizianagaram, followed by successful completion of Intermediate and SSC education in Srikakulam District, Andhra Pradesh. Throughout his education, Dr. Rao consistently ranked among the top performers, qualifying competitive exams like GATE and PGECET, and earning multiple fellowships from MHRD, India. This strong academic foundation laid the groundwork for his impactful research and teaching career in condensed matter physics and materials science.

Experience 

Dr. T. Lakshmana Rao brings over 10 years of experience in both teaching and research. He began his career as a Physics Lecturer at Narayana Junior College, Visakhapatnam, and subsequently served as a Teaching Assistant at NIT Rourkela during his Ph.D. program. He has taught IIT-JEE and NEET Physics at various academies and worked as Guest Faculty at a government junior college in Islampeta, Visakhapatnam. From 2021 to 2022, he held the position of Assistant Professor at Dadi Institute of Engineering and Technology. Currently, he serves as Associate Professor (Selection Grade) at Vignan’s Institute of Information Technology, where he teaches undergraduate engineering courses and contributes to curriculum design, mentoring, and institutional accreditation (NAAC/NBA). His teaching portfolio includes subjects such as Solid State Physics, Engineering Physics, and Quantum Mechanics. In addition to classroom teaching, he has actively promoted innovation through the AICTE IDEA Lab and student research mentorship programs.

Research Interests

Dr. Rao’s research interests lie at the interface of Condensed Matter Physics, Nanomaterials, and Quantum Systems. He focuses on the synthesis and characterization of nanoparticles, particularly LaFeO₃ and its doped variants, studying their structural, magnetic, dielectric, and optical properties. His investigations contribute to the development of advanced materials for magnetic sensors, superconductors, and optoelectronic devices. He is also exploring multiferroic materials and strongly correlated electron systems, aiming to understand complex phenomena such as magnetoelectric coupling and polaronic conduction mechanisms. Additionally, his interest in quantum computing reflects his forward-looking approach to integrating physics with emerging technological paradigms. Dr. Rao’s multidisciplinary focus, which bridges materials science, solid-state physics, and electronic engineering, supports innovative research outcomes. His laboratory work frequently involves structural refinement, grain-boundary studies, and magnetic phase transition analysis, all critical to advancing real-world applications in nanotechnology and electronics.

Awards and Honors 

Dr. T. Lakshmana Rao has received multiple recognitions throughout his academic and research career. He was awarded both the Junior Research Fellowship (JRF) and Senior Research Fellowship (SRF) by the Ministry of Human Resource Development (MHRD), Government of India, during his Ph.D. at NIT Rourkela. He also qualified the prestigious GATE (Physics) 2010, securing an All India Rank of 503 with a 94.5 percentile, and received the GATE Fellowship during his postgraduate studies. Additionally, he achieved top ranks in regional entrance exams such as PGECET and AUCET, showcasing his academic excellence early on. Dr. Rao’s research articles are frequently published in leading SCI-indexed journals, further underlining the quality of his work. He has also played an important role in institutional innovation as the Institution’s Innovation Cell Ambassador for AICTE IDEA Lab, reflecting national-level recognition of his leadership and contribution to higher education and scientific advancement.

Research Skills

Dr. Rao possesses a diverse set of advanced research skills in materials synthesis, characterization, and data analysis. His expertise includes wet chemical methods for nanoparticle synthesis, XRD and Rietveld refinement, VSM and SQUID magnetometry, dielectric and impedance spectroscopy, and UV-Vis and PL spectroscopy. He has strong command over the interpretation of magnetic phase transitions, polaronic conduction, grain-boundary effects, and chemical pressure effects, especially in perovskite-type structures like LaFeO₃. His analytical skills extend to using software tools for material modeling and experimental data fitting. Furthermore, he is adept at drafting scientific manuscripts, performing literature reviews, and managing collaborative research workflows with co-authors from multiple institutions. These technical capabilities are supported by his involvement in multidisciplinary research, enabling him to handle complex scientific problems with confidence and precision. His mentoring skills, especially in guiding undergraduate research and innovation projects, also reflect his effectiveness as a well-rounded scientific researcher.

Publications Top Notes

Title: Probing structural and photophysical features of Eu³⁺ activated NaCdPO₄ orthophosphate phosphor
Authors: M.K. Pradhan, T.L. Rao, U.K. Goutam, S. Dash
Journal: Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, Volume 240, Article ID 118593
Year: 2020
Citations: 41

Title: Substitution induced magnetic phase transitions and related electrical conduction mechanisms in LaFeO₃ nanoparticle
Authors: T. Lakshmana Rao, M.K. Pradhan, U.K. Goutam, V. Siruguri, V.R. Reddy, et al.
Journal: Journal of Applied Physics, Volume 126, Issue 6
Year: 2019
Citations: 25

Title: Influence of Zn(II) on the structure, magnetic and dielectric dynamics of nano-LaFeO₃
Authors: T. Lakshmana Rao, M.K. Pradhan, S. Singh, S. Dash
Journal: Journal of Materials Science: Materials in Electronics, Volume 31, Issue 6, Pages 4542–4553
Year: 2020
Citations: 22

Title: Structural and photoluminescence behavior of thermally stable Eu³⁺ activated CaWO₄ nanophosphors via Li⁺ incorporation
Authors: P.V. Ramakrishna, T.L. Rao, A. Singh, B. Benarji, S. Dash
Journal: Journal of Molecular Structure, Volume 1149, Pages 426–431
Year: 2017
Citations: 20

Title: Structural, magnetic, grain and grain boundary mediated conduction features of low dimensional LaFeO₃ nanoparticles
Authors: T.L. Rao, M.K. Pradhan, M. Chandrasekhar, P.V. Ramakrishna, S. Dash
Journal: Journal of Physics: Condensed Matter, Volume 31, Issue 34, Article ID 345803
Year: 2019
Citations: 14

Title: Dy³⁺ Activated Nearly White Emitting NaCdPO₄ as Potential Phosphors for Solid State Light Applications
Authors: M.K. Pradhan, T.L. Rao, S. Dash
Journal: Journal of Electronic Materials, Volume 49, Issue 4, Pages 2463–2470
Year: 2020
Citations: 10

Conclusion

Dr. T. Lakshmana Rao is a highly deserving candidate for the Best Researcher Award. With a robust academic background, a strong portfolio of high-quality research publications, and over a decade of experience in teaching and mentoring, he has made substantial contributions to the advancement of materials science and condensed matter physics. His interdisciplinary research in nanoparticles and magnetic materials, along with his involvement in institutional innovation and national fellowship programs, underscores both his scholarly potential and societal impact. Moving forward, Dr. Rao is well-positioned to lead pioneering research initiatives and inspire future scientific talent, making him a compelling choice for this prestigious recognition.

Andres J. Kreiner | Physics and Astronomy | Best Researcher Award

Prof. Andres J. Kreiner | Physics and Astronomy | Best Researcher Award

Professor of Physics- Superior Investigator-Head Accelerator Technology and Applications Department at University of San Martin-National Atomic Energy Commission, Argentina

Prof. Andrés Juan Kreiner is a distinguished physicist specializing in nuclear spectroscopy, accelerator technology, and medical physics applications. He holds a Ph.D. in Natural Sciences from the Technical University of Munich and has made significant contributions to nuclear research, particularly in boron neutron capture therapy (BNCT) and proton therapy. As a senior researcher at CNEA and CONICET, he has led interdisciplinary teams developing accelerator-based technologies for biomedical and nuclear applications. He has held visiting research positions at prestigious institutions such as Brookhaven National Laboratory, Oak Ridge National Laboratory, and the Institut de Physique Nucléaire in France. Additionally, he has played a crucial role in academic leadership, serving as a professor at multiple universities and contributing to curriculum development in interdisciplinary science and technology programs. His extensive work in science policy, public engagement, and international collaborations has solidified his reputation as a leader in nuclear science and its applications.

Professional Profile 

Education

Prof. Andrés J. Kreiner pursued his higher education in physics, earning a Ph.D. in Natural Sciences from the Technical University of Munich, Germany. His doctoral research focused on nuclear spectroscopy and accelerator technology, laying the foundation for his extensive contributions to nuclear physics and medical applications. Prior to his Ph.D., he completed his undergraduate studies in physics, where he developed a strong background in nuclear reactions and experimental techniques. Throughout his academic journey, he engaged in multidisciplinary research, gaining expertise in areas such as boron neutron capture therapy (BNCT) and proton therapy. His education was further enriched by international collaborations and research stays at renowned institutions, including Brookhaven National Laboratory and Oak Ridge National Laboratory. His commitment to academic excellence and continuous learning has played a pivotal role in shaping his career, enabling him to lead groundbreaking research projects and mentor future generations of scientists in nuclear and medical physics.

Professional Experience

Prof. Andrés J. Kreiner has had a distinguished career in nuclear physics, with extensive contributions to both fundamental research and applied sciences. He has held key academic and research positions, including his long-standing role at the National Atomic Energy Commission (CNEA) of Argentina, where he has been instrumental in advancing nuclear applications in medicine and industry. His expertise in accelerator-based nuclear reactions and boron neutron capture therapy (BNCT) has led to pioneering developments in cancer treatment. He has also collaborated with leading international institutions such as Brookhaven National Laboratory and Oak Ridge National Laboratory, enhancing global research efforts in nuclear spectroscopy and particle accelerator technologies. In addition to his research, Prof. Kreiner has mentored numerous students and contributed significantly to scientific literature, strengthening Argentina’s position in the field of nuclear physics. His professional career is marked by innovation, interdisciplinary collaboration, and a commitment to advancing both theoretical and applied nuclear science.

Research Interest

Prof. Andrés J. Kreiner’s research interests lie at the intersection of nuclear physics, medical applications, and accelerator technology. His work focuses on nuclear reactions, spectroscopy, and the development of particle accelerators for both fundamental studies and applied sciences. A significant area of his research is Boron Neutron Capture Therapy (BNCT), a cutting-edge cancer treatment method that utilizes neutron beams to target malignant cells selectively. He has also contributed extensively to the advancement of accelerator-driven neutron sources, with applications in medicine, industry, and materials science. His studies in nuclear instrumentation and radiation detection have played a crucial role in improving diagnostic and therapeutic technologies. Prof. Kreiner’s interdisciplinary approach integrates physics, engineering, and medical sciences, fostering collaborations with international research institutions. Through his contributions, he has advanced the understanding of nuclear interactions and their practical applications, particularly in healthcare and radiation-based technologies, making a lasting impact on the field.

Award and Honor

Prof. Andrés J. Kreiner has received numerous awards and honors in recognition of his outstanding contributions to nuclear physics, accelerator technology, and medical applications such as Boron Neutron Capture Therapy (BNCT). His pioneering work in neutron-based cancer treatment and accelerator-driven neutron sources has earned him prestigious accolades from scientific institutions and professional organizations worldwide. He has been honored by national and international physics societies for his research excellence, leadership, and innovation in nuclear science and its applications. His contributions have also been recognized through invited lectures, keynote speeches, and memberships in esteemed scientific committees. Additionally, Prof. Kreiner has played a key role in advancing collaborative research efforts, earning recognition from academic institutions and research centers. His dedication to scientific progress, particularly in the medical and nuclear physics domains, has cemented his reputation as a leading figure in the field, with awards that reflect his impact on both science and society.

Research Skill

Prof. Andrés J. Kreiner possesses a diverse and advanced set of research skills, particularly in the fields of nuclear physics, accelerator technology, and medical applications such as Boron Neutron Capture Therapy (BNCT). His expertise includes the development and optimization of particle accelerators, neutron sources, and radiation detectors for scientific and medical purposes. He has extensive experience in experimental physics, computational modeling, and data analysis, which he applies to improve neutron-based therapies and nuclear instrumentation. His ability to integrate theoretical knowledge with practical applications has led to significant advancements in nuclear medicine and radiation technology. Additionally, Prof. Kreiner has strong collaborative and interdisciplinary research skills, working with scientists, engineers, and medical professionals to develop innovative solutions. His proficiency in scientific communication, project management, and grant writing has facilitated numerous successful research initiatives, making him a recognized leader in his field. His work continues to shape the future of nuclear and medical physics.

Conclusion

Andrés Juan Kreiner is an exceptionally strong candidate for the Best Researcher Award. His groundbreaking contributions in nuclear physics, accelerator technology, and medical applications, combined with his leadership in major scientific institutions, make him highly deserving. While adding more recent international recognitions and emphasizing his publication impact could further solidify his case, his vast experience and impact on both research and applied sciences position him as a top contender for this prestigious award.

Publications Top Noted

  • Title: Present status of accelerator-based BNCT
    Authors: AJ Kreiner, J Bergueiro, D Cartelli, M Baldo, W Castell, JG Asoia, …
    Year: 2016
    Citation: 169

  • Title: Study of atmospheric particulate matter in Buenos Aires city
    Authors: H Bogo, M Otero, P Castro, MJ Ozafrán, A Kreiner, EJ Calvo, RM Negri
    Year: 2003
    Citation: 143

  • Title: Concentrations and elemental composition of particulate matter in the Buenos Aires underground system
    Authors: LG Murruni, V Solanes, M Debray, AJ Kreiner, J Davidson, M Davidson, …
    Year: 2009
    Citation: 103

  • Title: Rotational structures in doubly odd 198Tl
    Authors: AJ Kreiner, M Fenzl, S Lunardi, MAJ Mariscotti
    Year: 1977
    Citation: 95

  • Title: Coriolis-Distorted Bands of Common g9/2 Parentage in Odd and Doubly Odd N= 41 Nuclei
    Authors: AJ Kreiner, MAJ Mariscotti
    Year: 1979
    Citation: 94

  • Title: Experimental and theoretical radiation damage studies on crystalline silicon solar cells
    Authors: M Alurralde, MJL Tamasi, CJ Bruno, MGM Bogado, J Plá, JF Vázquez, …
    Year: 2004
    Citation: 93

  • Title: High-spin states in doubly odd and signature inversion in structures
    Authors: MA Cardona, AJ Kreiner, D Hojman, G Levinton, ME Debray, M Davidson, …
    Year: 1999
    Citation: 77

  • Title: Accelerator-based BNCT
    Authors: AJ Kreiner
    Year: 2012
    Citation: 74

  • Title: Band structure in and the different coupling schemes in a deformed doubly odd nucleus
    Authors: AJ Kreiner, J Davidson, M Davidson, D Abriola, C Pomar, P Thieberger
    Year: 1987
    Citation: 69

  • Title: Induction and rejoining of DNA double strand breaks assessed by H2AX phosphorylation in melanoma cells irradiated with proton and lithium beams
    Authors: IL Ibañez, C Bracalente, BL Molinari, MA Palmieri, L Policastro, AJ Kreiner, …
    Year: 2009
    Citation: 67

  • Title: Evidence for Predicted Level Crossings in π ̃ h9/2 ⊗ ν ̃ i13/2 Bands in Very Neutron-Deficient, Doubly Odd T1 Isotopes
    Authors: AJ Kreiner, C Baktash, GG Bermudez, MAJ Mariscotti
    Year: 1981
    Citation: 67

  • Title: Structure in Tl 200 and the odd-even staggering in π ̃ h9/2 ⊗ ν ̃ i13/2 bands
    Authors: AJ Kreiner, MAJ Mariscotti, C Baktash, E Der Mateosian, P Thieberger
    Year: 1981
    Citation: 67