Area of research
Atomic and Molecular Physics, and Optics · Materials Chemistry
Research interest
Research interests include Materials science, Condensed matter physics, Heusler compound, Nanotechnology, Physics, and Computer science.
Roadmap for unconventional computing with nanotechnology
Temperature-resilient random number generation with stochastic actuated magnetic tunnel junction devices
A True Random Number Generator for Probabilistic Computing using Stochastic Magnetic Actuated Random Transducer Devices
Impact Ionization Coefficients of Digital Alloy and Random Alloy Al<sub>0.85</sub>Ga<sub>0.15</sub>As<sub>0.56</sub>Sb<sub>0.44</sub> in a Wide Electric Field Range
Synthesis and characterization of Co-Ti-Sn alloys: Co1.5TiSn as half-metal based on the Fe1.5TiSb layered Heusler prototype
Skyrmionics—Computing and memory technologies based on topological excitations in magnets
DSpace@MIT (Massachusetts Institute of Technology) 2021cited by 78position: last
Tuning Dzyaloshinskii-Moriya interaction in ferrimagnetic GdCo: A first-principles approach
Computational investigation of half-Heusler/MgO magnetic tunnel junctions with (001) orientation
Structural and magnetic analyses of the FexCo1−xTiSb alloy system: Fe0.5Co0.5TiSb as a prototypical half-Heusler compound
Computational investigation of inverse Heusler compounds for spintronics applications
Computational investigation of half-Heusler compounds for spintronics applications
Electron optics with p-n junctions in ballistic graphene
Synthesis and characterization of Fe-Ti-Sb intermetallic compounds: Discovery of a new Slater-Pauling phase
Anisotropy in layered half-metallic Heusler alloy superlattices
Spin Transfer Torque: A Multiscale Picture
Reducing error rates in straintronic multiferroic nanomagnetic logic by pulse shaping
Reducing error rates in straintronic multiferroic dipole-coupled nanomagnetic logic by pulse shaping
Switching of Dipole Coupled Multiferroic Nanomagnets in the Presence of Thermal Noise: Reliability of Nanomagnetic Logic
Progress and Prospects of Spin Transfer Torque Random Access Memory