SC–FM heterostructures, studying proximity-induced triplet pairing, spin transport, and interfacial superconductivity.
- Studied classification of topological quantum matter with symmetries.
- Comprehensive theoretical analysis of symmetry-protected topological Dirac nodal line (DNL) magnonic phases in layered honeycomb collinear antiferromagnets, including Interlayer Spin Canting Interactions.
- Poster accepted at QMEC 2025 and 12th National Conference on Material Science, IIST Trivandrum.
Working on a manuscript for journal submission on topological magnon nodal lines.
- Worked in the Acoustic and Quantum Sensing Lab, gaining industrial R&D experience.
- Contributed to pipeline leak detection research using deep learning on acoustic data, leading to an IEEE Sensors Letters publication.
Worked on the internal structure of hadrons from numerical simulations of Quantum Chromodynamics (QCD). Project: "Internal structure of hadrons from numerical simulations of QCD."
Selected for prestigious Summer Research Fellowship. Worked under Dr. Arvind Ayyer on theoretical background of Markov Processes with emphasis on MCMC simulation of the 1-D Ising Model.
Attended the Radio Astronomy Winter School (RAWS) 2023. Learned radio astronomy fundamentals with hands-on experiments using radio observation equipment.