
教育与科研工作经历
研究方向
教学科研
研究成果
工作经历
2025-01 to 2025-06, Post Ph.D., Saha Institute of Nuclear Physics, Kolkata, West Bengal, India
2025-07 to 2025-12, Assistant Professor, Institute of Engineering and Management, University of Engineering & Management, Kolkata, West Bengal, India
2026-01 to -present, Postdoctoral Fellow, Institute of Spin Science and Technology, South China University of Technology
教育经历
2019.08-2024.12 Saha Institute of Nuclear Physics, Homi Bhabha National Institute, Mumbai, India, Ph.D. in Experimental Condensed Matter Physics
2017.08-2019.07 Jadavpur University, Kolkata, West Bengal, India, Master's degree in Physics
2014.08-2017.07 Calcutta University, Kolkata, West Bengal, India, Bachelor's degree in Physics
I have conducted extensive research on the magnetic and transport properties of a diverse range of materials, including oxides, thin films, and intermetallic compounds. My work on magnetic properties has primarily focused on the exchange bias phenomenon, which plays a crucial role in magnetic memory devices, spin valves, and other advanced technological applications. In the area of magnetotransport, my research has centered on magnetoresistance, a fundamental property that underpins the read and write mechanisms in modern magnetic memory technologies.
Currently, my research is focused on low-dimensional systems, particularly two-dimensional (2D) materials.
代表论文
“The impact of oxygen deficiency on giant exchange bias in perovskite oxide: SrFe0.5Co0.5O3−δ (δ = 0.37)” Koustav Pal*, Indranil Das, Journal of Alloys and Compounds, 960, 170794, 2023.
“Exploring the exchange bias of Gd and MnPt: A combined structural and magnetic investigation”Koustav Pal*, I. Das, Thin Solid Films, 790, 140211, 2024.
“Giant Magnetoresistance Resulting from Superzone Gap in Spin-Frustrated Rare-Earth-Based Aluminide: DyFe2Al10”, Koustav Pal*, Suman Dey, I. Das, Journal of Physics: Condensed Matter, 36, 215802, 2024.
“Exploring the origin of exchange bias and spin glass behavior in 6H hexagonal perovskite structure: Structural and magnetic analysis”, Koustav Pal*, I. Das, Applied Materials Today, 39, 102316, 2024.
“The investigation of the influence of B-site disorder on giant exchange bias: Experimental observations and theoretical insights”, Koustav Pal*, Sudip Mandal, I. Das, Acta Materialia, 278, 120276, 2024.
“Unraveling extraordinary magnetoresistance in GdFe2Al10: a comprehensive exploration of transport and magnetism for technological applications”, Koustav Pal*, Suman Dey, I. Das, Journal of Materials Chemistry C, 12, 14936, 2024.
“Revealing exchange bias in spin compensated systems for spintronics applications”, Koustav Pal*, Suman Dey, Aftab Alam, I. Das, Scientific Reports, 14, 30678, 2024.
“Tuning Antiferromagnetism in DyFe2Al10 via Ru Substitution”, Koustav Pal*, I. Das, International Journal of Current Research in Science, Engineering & Technology, 8, 2, 296-298, 2025.
“Unraveling the origins of exchange bias and magnetic anomalies in Sr2FeRuO6: Experimental and theoretical insights”, Koustav Pal*, Sudip Mandal, Suman Dey, Kalpataru Pradhan, I. Das, Materials Today Communications, 46, 112814, 2025.
“Alteration and enhancement in Magnetocaloric effect through ionic engineering”, Afsar Ahmed, Koustav Pal*, I. Das, Inorganic Chemistry Communications, 179, 114760, 2025.
“Advanced Protocols for Enhancing Magnetocaloric Effect and Relative Cooling Power: Phenomena Important for Cooling Technology”, Amanulla Karikar, Koustav Pal,∗ Kalipada Das, Kalpataru Pradhan, Biswarup Satpati, and I.Das, Materials Research Bulletin, 198, 114021, 2026.