Himanshu Fulara
Indian Institute of Technology Roorkee, University of Gothenburg, Indian Institute of Technology Delhi, NanOsc AB
About
Himanshu Fulara is a Faculty Member in the Dept. of Physics at IIT Roorkee, India. Before joining IIT Roorkee, he worked as a Senior Researcher and Postdoctoral Scholar for about five years at the University of Gothenburg, Sweden. Before that, he briefly worked as a Postdoctoral Researcher at the Max Planck Institute in Halle, Germany. He obtained his Ph. D. from Thin Film Lab, IIT Delhi, India.
His research has focused on Applied Spintronics and nanomagnetism with a particular interest in spintronic nano-oscillator devices, magnetic skyrmions, spin-waves, brain-inspired computing, topological insulators, and exchange-biased bilayer thin films.
Employment
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Indian Institute of Technology Roorkee Associate Professor2026 - Present
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Indian Institute of Technology Roorkee Assistant Professor2021 - 2026
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University of Gothenburg Researcher2019 - 2021
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NanOsc AB Visiting Researcher2019 - 2019
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University of Gothenburg Postdoctoral Scholar2017 - 2019
Education
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Indian Institute of Technology Delhi PhD2009 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (32)
- Tunable current–field minima induced by demagnetizing fields in nano-constriction spin Hall nano-oscillators Save
- Optically assisted ultrafast spintronics: A review Save
- Energy Efficient Ultra-Fast Optically Switched Fully Non-Volatile Magnetic Full Adder for Enhanced Side-Channel Attack Resilience Save
- Tunable skyrmion–antiskyrmion dynamics in Co/Pt nanocontacts for spintronic applications Save
- Controllable frequency tunability in constriction-based spin Hall nano-oscillators for neuromorphic computing Save
- Role of spin-glass-like interfaces in exchange-biased MnN/Fe thin films grown on W buffer layers Save
- Ultra‐Low Current 10 nm Spin Hall Nano‐Oscillators Save
- Robust Mutual Synchronization in Long Spin Hall Nano-oscillator Chains Save
- Injection Locking of Linearlike and Soliton Spin-Wave Modes in Nanoconstriction Spin Hall Nano-oscillators Save
- Voltage control of frequency, effective damping, and threshold current in nano-constriction-based spin Hall nano-oscillators Save