most citedLarge Non-Volatile Frequency Tuning of Spin Hall Nano-Oscillators using Circular Memristive Nano-Gates

7 citations · 13 across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.mes-hall2025

Metrics for spin-based computing

Hidekazu Kurebayashi, Giovanni Finocchio, Karin Everschor-Sitte +10

Spin-based computing is emerging as a powerful approach for energy-efficient and high-performance solutions to future data processing hardware. Spintronic devices function by elect…

cond-mat.mes-hall2024

Spin Hall Nano-Oscillator Empirical Electrical Model for Optimal On-chip Detector Design

Rafaella Fiorelli, Mona Rajabali, Roberto Méndez-Romero +7

As nascent nonlinear oscillators, nano-constriction spin Hall nano-oscillators (SHNOs) represent a promising potential for integration into more complicated systems such as neural…

cond-mat.mes-hall20246 cited

Emission of fast-propagating spin waves by an antiferromagnetic domain wall driven by spin current

Roman V. Ovcharov, B. A. Ivanov, Johan Åkerman +1

Antiferromagnets (AFMs) have great benefits for spintronic applications such as high frequencies (up to THz), high speeds (up to tens of km/s) of magnetic excitations, and field-fr…

cond-mat.mes-hall2024

Spintronic devices as next-generation computation accelerators

Victor H. González, Artem Litvinenko, Akash Kumar +2

The ever increasing demand for computational power combined with the predicted plateau for the miniaturization of existing silicon-based technologies has made the search for low po…

physics.app-ph20247 cited

Large Non-Volatile Frequency Tuning of Spin Hall Nano-Oscillators using Circular Memristive Nano-Gates

Maha Khademi, Akash Kumar, Mona Rajabali +2

Spin Hall nano oscillators (SHNOs) are promising candidates for neuromorphic computing due to their miniaturized dimensions, non-linearity, fast dynamics, and ability to synchroniz…