Bakiye cakir | Superconductivity | Best Researcher Award

Ms. Bakiye cakir | Superconductivity | Best Researcher Award

Associate Professor | Artvin Coruh University | Turkey

Bakiye Cakır is an Associate Professor at Artvin Coruh University, Vocational School of Health Services, with expertise in superconductivity, computational modelling, and artificial intelligence applications in material sciences. She earned her doctoral degree in physics and has since built a strong academic and research profile with numerous contributions to the advancement of high-temperature superconductors (HTS). Her work encompasses both experimental and computational approaches, with a focus on the production and characterization of bulk HTS superconductors. She has published widely in indexed journals, presented her findings at international conferences, and participated in multiple national and international projects. To date, her research outputs include 24 publications, cited by 94 documents, with an h-index of 7. Her research has introduced innovative methods for mapping critical current density distribution in superconductors, offering enhanced efficiency in simulation processes and improved applicability of superconducting systems in real-world contexts. More recently, she has pioneered the integration of machine learning techniques into superconductivity research, leveraging AI to predict performance, optimize experimental outcomes, and reduce costs associated with material development. This interdisciplinary approach contributes not only to the fundamental understanding of superconducting mechanisms but also to their practical applications in energy technologies, magnetic shielding, and advanced engineering systems. She is actively engaged in international collaborations through participation in COST Actions such as EuMace, EuMine, and SUPERQUMAP, contributing to global scientific networks that foster innovation and knowledge exchange. Through her dedication to research excellence and interdisciplinary exploration, she continues to advance the field of applied superconductivity while mentoring future scientists and strengthening the link between theoretical insights and technological applications.

Profile: Scopus | Orcid 

Featured Publications

Aksoy, C., Çakır, B., Taylan Koparan, E., Şimşek, C., Tıraşoğlu, E., Speller, S., Grovenor, C. R. M., Küçükömeroğlu, T., & Yanmaz, E. (2023). Demonstration of better superconducting performance in a solder with low lead content. Superconductor Science and Technology, 36(1), 015004.

Basoglu, M., Çakır, B., Duman, Ş., & Aydıner, A. (2023). The effect of the Y₂O₃ buffer layer on the microstructural and physical properties of melt-processed Y358 superconductor. Bulletin of Materials Science, 46(1), 76.

Çakır, B. (2022). Variation of pinning force density throughout the TSMG Y123 superconductor with location. Cumhuriyet Science Journal, 43(3), 642–650.

Çakır, B. (2023). Effect of the heat treatment applied during the welding process on superconducting properties of the welded YBCO samples. IEEE Transactions on Applied Superconductivity, 33(1), 4600202.

Duman, Ş., Çakır, B., Başoğlu, M., Küçükömeroğlu, T., & Aydıner, A. (2023). The effect of fabrication method on physical properties of different Y211 and 20% Ag₂O added YBCO sample. Journal of Materials Science: Materials in Electronics, 34(13), 9881–9890.