Jai Dev | Electromagnetic Sensors | Best Researcher Award

Best Researcher Award

Jai Dev
Affiliation CSIR–National Physical Laboratory (NPL), New Delhi
Country India
Scopus ID 58793674400
Documents 7
Citations 32
h-index 3
Subject Area Condensed Matter Physics, Magnetism, Spintronics, Functional Materials
Event Global Sensor Awards

Jai Dev is an Indian experimental condensed matter physicist affiliated with the CSIR–National Physical Laboratory (NPL), New Delhi, and a doctoral researcher at the Academy of Scientific and Innovative Research (AcSIR). His research focuses on multifunctional magnetic materials, topological transport phenomena, magnetocaloric effects, giant magnetoresistance, skyrmionic spin textures, and thin-film spintronic systems. Through extensive experimental investigations on modified Mn2Sb-based compounds and related magnetic materials, he has contributed to advancing the understanding of magnetic anisotropy, topological Hall effects, and device-oriented magnetic functionalities.[1]

Abstract

Jai Dev’s research centers on the synthesis, characterization, and functional understanding of magnetic materials exhibiting technologically relevant properties. His doctoral investigations emphasize modified Mn2Sb systems, topological transport phenomena, giant magnetoresistance, magnetocaloric effects, and ferrimagnetic spin textures. By combining advanced crystal growth techniques, magnetic characterization tools, and transport measurements, he has contributed to understanding the relationship between crystal structure, magnetic interactions, and electronic transport. His work extends toward thin-film architectures for next-generation spintronic applications, including racetrack memory, neuromorphic computing, and skyrmion-based devices.[2]

Keywords

Condensed Matter Physics, Spintronics, Magnetocaloric Effect, Giant Magnetoresistance, Topological Hall Effect, Ferrimagnetism, Magnetic Anisotropy, Skyrmions, Functional Materials, Thin Films, Magnetic Refrigeration, Magnetic Sensors, Chiral Spin Textures, Magnetotransport, Mn2Sb Compounds.

Introduction

The development of multifunctional magnetic materials remains a major area of contemporary condensed matter research because of their potential applications in information storage, sensing technologies, refrigeration, and energy-efficient computing. Jai Dev has focused his academic career on understanding the fundamental magnetic and electronic behaviors of intermetallic compounds and related systems. His research addresses important scientific questions regarding magnetic phase transitions, anisotropic transport, topological spin textures, and magnetically driven functionalities that can support future device technologies.[3]

Research Profile

As a doctoral researcher at AcSIR and CSIR–NPL, Jai Dev has developed expertise across the complete experimental materials research cycle, including crystal growth, thin-film fabrication, structural characterization, magnetic measurements, and transport analysis. His technical competencies include operation of PPMS, MPMS, SQUID magnetometers, Raman spectroscopy systems, thermal evaporation units, X-ray diffraction instruments, and advanced materials synthesis facilities.[4]

His scientific interests encompass interface magnetism, skyrmion stabilization, chiral magnetic interactions, anisotropic magnetotransport, permanent magnets, magnetic refrigeration, and multifunctional materials. Through both bulk and thin-film studies, he investigates mechanisms that govern magnetic ordering and transport signatures in technologically relevant systems.[4]

Research Contributions

  • Investigated giant magnetoresistance and coercivity evolution in modified MnZnSb systems through processing-controlled magnetic engineering.
  • Reported coexistence and tunability of conventional and inverse magnetocaloric effects in Ge-modified MnZnSb single crystals.
  • Studied asymmetric magnetoresistance and topological Hall effect signatures associated with non-trivial spin textures.
  • Contributed to thin-film investigations of magnetic Heusler compounds exhibiting weak anti-localization and magnetotransport phenomena.
  • Advanced understanding of ferrimagnetic materials exhibiting finite spin chirality and topological transport responses.
  • Expanded research toward skyrmion-based spintronic devices, neuromorphic architectures, and next-generation memory technologies.

Publications

Jai Dev has authored and co-authored numerous peer-reviewed publications in internationally recognized journals including Physica Status Solidi A, Physica Status Solidi B, ACS Applied Electronic Materials, Journal of Magnetism and Magnetic Materials, Journal of the American Ceramic Society, and the Journal of the Australian Ceramic Society. His publications collectively address magnetic phase transitions, magnetocaloric behavior, topological transport, ferrimagnetism, thin-film magnetism, and multifunctional magnetic materials.[5]

  • Material Processing–Driven Evolution of Magnetic Coercivity and Magnetoresistance in Mn2-xZnxSb0.9Bi0.1 Compounds (2026).
  • Tuning of Conventional and Inverse Magnetocaloric Effect Coexistence in Ge‐Modified MnZnSb Single Crystal (2025).
  • Asymmetric Magnetoresistance and Topological Hall Effect in MnZnSb Single Crystal (2025).
  • Pd-Doped RuO2 as a Battery–Supercapacitor Hybrid Electrode (2024).
  • Weak Anti-localization and Magnetotransport in Disordered Mn2Ni1.6Sn0.4 Thin Films (2024).

Research Impact

The research portfolio of Jai Dev contributes to the growing international effort to develop advanced magnetic materials for future information technologies and energy-efficient devices. His studies on topological Hall effects, skyrmion-related phenomena, and magnetocaloric materials provide valuable experimental insights into fundamental magnetic interactions while also addressing practical technological applications. His participation in major scientific conferences, including the Joint MMM–Intermag Conference in the United States, further demonstrates active engagement with the global magnetism research community.[3]

Award Suitability

Jai Dev demonstrates strong qualifications for recognition under emerging researcher and research excellence award categories. His accomplishments include successful doctoral research, multiple peer-reviewed publications, advanced expertise in materials synthesis and characterization, and contributions to the understanding of topological magnetic phenomena. The combination of fundamental scientific discoveries and application-oriented research in spintronics, magnetic refrigeration, and sensor technologies supports his suitability for academic recognition programs focused on innovation and future technological impact.[4]

Conclusion

Jai Dev represents a new generation of condensed matter physicists working at the intersection of fundamental magnetism and emerging device technologies. His research contributions in multifunctional magnetic materials, topological transport phenomena, and spintronic architectures highlight a sustained commitment to scientific advancement. Through continued exploration of skyrmions, chiral magnetic interactions, and thin-film systems, his work is positioned to contribute meaningfully to future developments in memory technologies, neuromorphic computing, sensors, and sustainable electronic devices.[5]

References

  1. CSIR–National Physical Laboratory and AcSIR. Research profile and doctoral research activities of Jai Dev.
  2. Jai Dev et al. Publications related to multifunctional magnetic materials, magnetocaloric effects, and topological transport phenomena.
  3. AcSIR Doctoral Thesis. Single Crystal Growth and Characterization of Multifunctional Modified-Mn2Sb Compounds.
  4. Research expertise, instrumentation experience, and materials synthesis capabilities documented in the academic profile.
  5. Selected publications in Physica Status Solidi, ACS Applied Electronic Materials, and Journal of Magnetism and Magnetic Materials.

Joao Thiago Rodrigues de Sousa | Electromagnetic Sensors | Innovative Research Award

Innovative Research Award

João Thiago Rodrigues de Sousa
Affiliation Federal University of Western Pará (UFOPA)
Country Brazil
Scopus ID 36554033800
Documents 7
Citations 34
h-index 3
Subject Area Forestry, Agroecology, Statistical Modeling, Land Management, Electromagnetic Sensors
Event Global Sensor Awards
ORCID 0000-0002-5761-4631

João Thiago Rodrigues de Sousa
Biodiversity and Forests Institute/ Federal University of Western Pará, Brazil

João Thiago Rodrigues de Sousa, is a Brazilian researcher and academic professional specializing in forestry systems, agroecology, land-use management, and statistical modeling. His academic and professional activities emphasize sustainable ecosystem management, evidence-based environmental decision-making, and interdisciplinary agricultural research. Associated with the Federal University of Western Pará (UFOPA), Sousa has contributed to sustainable management practices for tropical ecosystems and Amazonian agroforestry systems through research, teaching, and technical evaluation.[1]

His work integrates quantitative methodologies, ecological principles, and sustainability frameworks to support productive land-use systems while addressing conservation and socio-environmental challenges. The researcher is recognized for his expertise in applied environmental assessment, agroecological systems, and reproducible statistical analysis using R programming environments.[2]

Abstract

This academic article presents the research profile and professional contributions of João Thiago Rodrigues de Sousa in the fields of forestry, agroecology, land-use management, and environmental sustainability. His work focuses on integrating scientific reasoning with sustainable land-management strategies applicable to tropical ecosystems and Amazonian production systems. The article examines his academic trajectory, research contributions, methodological competencies, and relevance to contemporary environmental and agroecological challenges. The profile additionally highlights the researcher’s involvement in statistical modeling, scientific evaluation, and interdisciplinary ecosystem analysis relevant to modern sustainable development frameworks.[1]

Keywords

Forestry; Agroecology; Land Management; Sustainable Agriculture; Environmental Research; Statistical Modeling; Tropical Ecosystems; Agroforestry Systems; Sustainability Assessment; Amazon Research; Quantitative Analysis; Ecological Management; Scientific Evaluation; R Programming; Environmental Decision-Making.

Introduction

Research in sustainable land-use systems and agroecological management has become increasingly important in addressing ecological degradation, climate-related pressures, and conservation demands within tropical regions. Scholars working in forestry and agroecology contribute substantially to the development of resilient management systems that balance productivity with environmental preservation.[3]

João Thiago Rodrigues de Sousa has developed a research profile centered on evidence-based environmental management and applied ecosystem evaluation. His academic experience combines field-oriented ecological understanding with quantitative analytical methods designed to support sustainable agricultural and forestry practices. Through his work at UFOPA and associated academic projects, Sousa has participated in the development of interdisciplinary strategies related to conservation, productivity optimization, and ecological sustainability within the Amazon region.[2]

Research Profile

Sousa’s professional profile reflects extensive engagement with agroecological systems, land-use planning, forest-based production models, and sustainability-oriented agricultural experimentation. His educational background includes advanced training in Agricultural Sciences, Agroecology, and Statistics and Agricultural Experimentation, supporting a multidisciplinary research framework applicable to environmental and agricultural sciences.[1]

His research activities involve experimental and observational study design, sustainability evaluation, technical content assessment, and ecological modeling. The integration of statistical methodologies with field-based environmental studies enables the development of scientifically grounded approaches for evaluating management systems and ecosystem performance.[4]

  • Forest and agroforestry systems analysis.
  • Sustainable land-use planning and management.
  • Environmental and socio-ecological assessment methodologies.
  • Statistical analysis and reproducible research using R.
  • Technical scientific review and evaluation.

Research Contributions

A significant component of Sousa’s contributions involves the development and evaluation of sustainable management models for perennial agricultural systems and forest-associated ecosystems in the Amazon region. His research integrates productivity objectives with ecological and social considerations, contributing to the broader understanding of sustainability-oriented land management.[2]

The researcher has additionally contributed to scientific communication and technical review activities involving educational materials, sustainability reports, and academic publications. His work supports interdisciplinary collaborations that bridge environmental science, agronomy, forestry, and statistical experimentation.[5]

  • Evaluation of tropical land-management systems.
  • Research on agroecological sustainability frameworks.
  • Quantitative environmental assessment methodologies.
  • Academic supervision in agroecology and land-use planning.
  • Scientific peer-review and technical validation activities.

Publications

The researcher maintains an indexed scholarly profile through Scopus and related academic databases, demonstrating participation in scientific publication and environmental research dissemination.[1]

  • Research publications in agroecology and land-use sustainability.
  • Studies involving agricultural experimentation and ecological modeling.
  • Technical reports related to Amazonian environmental systems.
  • Collaborative scientific outputs addressing conservation-oriented agriculture.

Example DOI reference related to agroecological and sustainability research:
https://doi.org/10.1016/j.agee.2020.106879[6]

Research Impact

The research activities of João Thiago Rodrigues de Sousa contribute to ongoing discussions regarding sustainable agricultural intensification, ecosystem conservation, and responsible land-use governance within tropical environments. His analytical approach supports evidence-based environmental management while emphasizing reproducibility, scientific rigor, and interdisciplinary collaboration.[4]

Through teaching, research supervision, and scientific assessment activities, Sousa has contributed to the development of academic capacity and sustainability-oriented environmental practices within higher education and applied ecological research contexts.[5]

Award Suitability

João Thiago Rodrigues de Sousa demonstrates suitability for recognition in the category of forestry and sustainable land management through his interdisciplinary expertise, academic engagement, and contributions to environmentally responsible agricultural systems. His work aligns with contemporary priorities in conservation science, agroecological resilience, and sustainable ecosystem management.[3]

The researcher’s combination of quantitative analysis, ecological reasoning, technical review capability, and field-based sustainability assessment reflects competencies relevant to international academic and environmental recognition frameworks. His involvement in evidence-based environmental evaluation further strengthens the scholarly significance of his professional contributions.[2]

Conclusion

João Thiago Rodrigues de Sousa represents an academic profile characterized by interdisciplinary environmental research, agroecological expertise, and sustainable land-management scholarship. His contributions to tropical ecosystem analysis, quantitative experimentation, and sustainability-oriented scientific evaluation position him within contemporary discussions surrounding ecological resilience and responsible agricultural development. The combination of academic instruction, applied research, and analytical expertise reflects a consistent commitment to evidence-based environmental science and sustainable ecosystem management.[1]

References

  1. Elsevier. (n.d.). Scopus author details: João Thiago Rodrigues de Sousa, Author ID 36554033800. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=36554033800
  2. Federal University of Western Pará (UFOPA). (n.d.). Academic and research activities related to agroecology and land management.
    https://www.ufopa.edu.br/
  3. Food and Agriculture Organization. (2021). Sustainable forest management and agroecological systems.
    https://www.fao.org/
  4. R Core Team. (2024). R: A language and environment for statistical computing.
    https://www.r-project.org/
  5. United Nations Environment Programme. (2022). Environmental sustainability and land-use management frameworks.
    https://www.unep.org/
  6. Agriculture, Ecosystems & Environment. (2020). Agroecological sustainability and environmental management studies.
    https://doi.org/10.1016/j.agee.2020.106879

Dr. Nicolas De la espriella | Magnetic Diagnostics | Best Researcher Award

Dr. Nicolas De la espriella | Magnetic Diagnostics | Best Researcher Award

Dr. Nicolas De la espriella, University of Córdoba, Colombia

Nicolás Antonio De La Espriella Vélez is a Colombian physicist and recognized peer reviewer by Minciencias, holding the category of Investigador Junior (IJ). He earned his Ph.D. in Physics from Universidad Simón Bolívar, Venezuela, focusing on numerical studies of magnetic properties in mixed ferrimagnetic Ising models. With a Master’s and Specialization in Physical Sciences from Universidad Nacional de Colombia and a Bachelor’s in Mathematics and Physics from Universidad de Córdoba, he has dedicated his career to academia and research. As a professor at Universidad de Córdoba since 1997, he has held various administrative roles, including department head and dean. His research spans condensed matter physics, particularly thermomagnetic properties of spin systems. He has mentored numerous undergraduate and graduate students and has been recognized for his contributions to scientific reviewing by Elsevier.

Professional Profile:

GOOGLE SCHOLAR

ORCID

SCOPUS

Summary of Suitability for Best Researcher Award

Based on Nicolás Antonio De La Espriella Vélez’s extensive academic background, research contributions, and recognition in the field of physics, he appears to be a strong candidate for the Best Researcher Award. His doctorate in physics, multiple research publications, and experience mentoring students in theoretical physics and magnetism demonstrate his commitment to advancing scientific knowledge. Additionally, his recognitions from Elsevier and IJRULA further validate his contributions to research.

🎓 Education

  • 🏅 Doctorate in Physics – Universidad Simón Bolívar, Venezuela (2006-2011)
    Thesis: Numerical Study of Magnetic Properties of a Mixed Ferrimagnetic Ising Model with Spins S=3/2 and Q=5/2
  • 📚 Master’s in Physical Sciences – Universidad Nacional de Colombia, Bogotá (1999)
    Thesis: Effective Potential for the Valence Electron in Quasi-Monoatomic Systems
  • 🎓 Specialization in Physical Sciences – Universidad Nacional de Colombia, Bogotá (1993)
    Thesis: Curriculum Design for the Establishment of the Physics Program at Universidad de Córdoba
  • 🏫 Bachelor’s in Mathematics and Physics – Universidad de Córdoba (1981)
    Thesis: Teaching Practices in Mathematics and Physics

💼 Work Experience

  • 📌 Universidad de Córdoba (1997 – Present)
    • 🏛️ Dean of Center (2013 – Present)
    • 📌 Head of Department (1998)
    • 🎓 Assistant Professor (Since 1997)
    • 📖 Undergraduate Course Instructor: Waves and Particles (Since 1997)
    • 🔬 Research & Development:
      • Calculation of Energies and Charge Densities for the Helium Atom (2004)
  • 📌 Universidad del Sinú – Elías Bechara Zainum (2014 – Present)
    • 📚 Professor (20 hours per week)

🏆 Achievements & Honors

  • 🏅 Meritorious Thesis – Universidad de Córdoba (2015)
  • 🏆 Outstanding Contribution in Reviewing – Elsevier (2017, 2018)
  • 🎖️ Cedro del Líbano Award – Universidad del Sinú – Elías Bechara Zainum (2021)

Publication Top Notes:

CITED:52
CITED:52
CITED:41
CITED:40
CITED:37

Mr. Yogesh Solunke | Electromagnetics Awards | Best Researcher Award

Mr. Yogesh Solunke | Electromagnetics Awards | Best Researcher Award

Mr. Yogesh Solunke, Visvesvaraya National Institute of Technology, India

Yogesh Shriram Solunke is an accomplished Electronics and Communication Engineer specializing in RF and microwave design, with expertise in Frequency Selective Surface (FSS) design. He is currently pursuing his Ph.D. at Visvesvaraya National Institute of Technology (VNIT), Nagpur, focusing on stealth and defense applications in the C and X bands. He holds an M.Tech. in Communication System Engineering from IIITD&M, Kancheepuram, and a Bachelor’s degree in Electronics and Communication Engineering from MIT Aurangabad. His research contributions include multiple SCI-indexed publications on novel FSS structures for radar cross-section reduction and multi-band filtering. With professional experience spanning academia and industry, he has worked as an EMAG Solution Expert at VIAS3D (Pune), a Junior Research Fellow at NIT Goa, and an RF Design Engineer at MMRFIC Technology, where he contributed to high-frequency antenna design. He has also served as a CST Application Engineer and R&D Engineer, collaborating with organizations like ISRO, BEL, and the Indian Navy. His research interests include radio frequency and microwave engineering, electromagnetics, and antenna design.

Professional Profile:

SCOPUS

GOOGLE SCHOLAR

Suitability for Best Researcher Award – Yogesh Shriram Solunke

Based on the provided information, Yogesh Shriram Solunke demonstrates a strong research background in RF and microwave design, frequency-selective surfaces (FSS), and electromagnetics, making him a potential candidate for the Best Researcher Award. Below is a structured evaluation of his suitability:

📚 Education

  • 🎓 Ph.D. (Pursuing) – RF and Microwave Design, Frequency Selective Surface Design, Visvesvaraya National Institute of Technology (VNIT), Nagpur (Feb 2021 – Present)
  • 🎓 Master of Design (Electronics and Communication System) – Indian Institute of Information Technology Design & Manufacturing (IIITD&M), Kancheepuram
    • 🏆 CGPA: 7.88
    • 🛠 Project: Design of Microwave Multiband and Wideband Filters (Guide: Dr. S.S. Karthikeyan)
  • 🎓 Bachelor of Engineering (ECE) – MIT Aurangabad (2013)
    • 📊 Percentage: 67%
  • 🎓 Class 10 – DPVM School (2007)
    • 📊 Percentage: 69.7%

💼 Work Experience

  • VIAS3D, Pune – EMAG Solution Expert (May 2022 – Present)
    • 🏆 Completed 6+ certifications from Dassault Systèmes in High-Tech & Aerospace
  • Visvesvaraya National Institute Of Technology (VNIT), Nagpur – Ph.D. Researcher (Feb 2021 – Oct 2024)
    • 📡 RF Microstrip Multilayer Absorber Research
  • National Institute of Technology Goa (NIT Goa) – Junior Research Fellow (Mar 2020 – Feb 2021)
    • 🔬 SERB ECRA-sponsored project on Compact and Wideband Dielectric Resonator Antennas
  • MMRFIC Technology, Hyderabad – RF Design Engineer (Feb 2019 – Feb 2020)
    • 📡 Designed antennas at 78 GHz & 94 GHz for fog systems
    • 📡 Developed a series feed array antenna at 24 GHz
  • Jyoti Electronics Pvt. Ltd., Ahmedabad – CST Application Engineer (Jan 2018 – Feb 2019)
    • 🚀 Worked on CST projects for SAC ISRO Ahmedabad and IIT/NITs
  • NAVSTAR Integrated Systems Pvt. Ltd., Hyderabad – R&D Engineer & Testing Engineer (Jun 2017 – Dec 2018)
    • ⚙️ Designed & measured UHF, VHF, and S-band filters for defense projects
    • 🏆 Clients: Indian Navy Mumbai, BEL Hyderabad, BEL Bangalore
  • Vignan Engineering College, Guntur – Assistant Professor (Jun 2016 – Jun 2017)

🏆 Achievements 

  • 📜 Publications in SCI-Indexed Journals
    • 📡 Ultra-thin, low-RCS, dual-bandpass fractal-FSS for C & X bands applicationsAEU – International Journal of Electronics and Communications, 2024
    • 📡 Frequency Selective Surface with quad-band absorption/transmission and angular stabilityOptics Communications, 2024
    • 📡 Low-RCS dual-bandstop golden ratio-based fractal-FSS for defense applicationsInternational Journal of Communication Systems (IJCS), 2024

🔬 Research Interests

  • 📡 Radio Frequency & Microwave Engineering
  • 🛰 Electromagnetics
  • 🏗 Frequency-Selective Surfaces & Antennas

Publication Top Notes:

Frequency selective surface with quad-band absorption/transmission and angular stability for TE and TM polarizations

An ultra-thin, low-RCS, dual-bandpass novel fractal-FSS for planar/conformal C&X bands applications

A low-RCS dual-bandstop golden ratio-based fractal-FSS for defense applications

A Compact Transparent FSS for Tri-Band Applications with Polarization Insensitive and RCS Reduction

Broadband metamaterial absorber for stealth applications at K-band