Seema
Ruhr University Bochum, University of Konstanz, UGC DAE Consortium for Scientific Research
About
Seema did her masters degree in Physics from Kurukshetra University, Kurukshetra Haryana, India. She entered the experimental research field after qualifying JEST, GATE and JOINT CSIR-UGC NET in physics in 2016. She got enrolled in Ph.D. program at UGC-DAE Consortium for Scientific Research Indore M.P. India. She worked in magnetron sputtering laboratory where they have state-of-the-art thin film deposition system equipped with dc, rf, HiPIMS power supplies, with a possibility to deposit thin films at substrate temperature ranging from 80 K to 1000 K, co-sputtering and deposition on various substrates altogether. Her Ph.D. work is mainly focused on structural, electronic, and magnetic properties of transition metal nitride thin films (Fe4N and Co4N). She has hands on experience in XRD, SIMS, PNR, MOKE, XMCD and XAS spectroscopy. Her first postdoc was at University of Konstanz and there she explored complex oxide materials such as EuO for their electronic and magnetic properties using XPS and MOKE. Now she is at RUB exploring semiconducting materials for QDs.
Employment
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Ruhr University Bochum Postdoc2026 - Present
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University of Konstanz2021 - 2025
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UGC DAE Consortium for Scientific Research Ph.D. Scholar2016 - 2021
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (17)
- From film to flakes: Electronic properties and magnetization variations in yttrium iron garnet Save
- Magnetic domains in ultrathin, bulk-like and proximity-coupled europium oxide Save
- Spatially resolved investigation of magnetization fluctuations in magnetic thin films Save
- Single-crystalline YIG flakes with uniaxial in-plane anisotropy and diverse crystallographic orientations Save
- Magnetic domains in ultrathin, bulk-like and proximity-coupled Europium Oxide Save
- Spatial mapping of magnetization fluctuations via time-lapse Kerr microscopy Save
- Stabilizing effects of Ag doping on structure and thermal stability of FeN thin films Save
- Interface-driven magnetic anisotropy of epitaxial Fe4N thin films Save
- Fully dense, highly conductive nanocrystalline TiN diffusion barrier on steel via reactive high power impulse magnetron sputtering Save
- Structural, electronic, and magnetic properties of Co4N thin films deposited using HiPIMS Save