Spin‐Wave Optics in YIG Realized by Ion‐Beam Irradiation
This work demonstrates focused-ion-beam (FIB) writing as a maskless technique for spin-wave optical devices, showing magnonic versions of lenses, gratings, and Fourier-domain processors.
Researcher | Formerly NIST Spin Electronics Group
Expert in spintronics, nanomagnetic devices, and material characterization. Pioneering focused-ion-beam techniques for spin-wave optical devices and developing next-generation neuromorphic computing architectures.
Advancing the frontiers of spintronics and nanomagnetic devices through innovative fabrication techniques and machine learning approaches
Pioneering focused-ion-beam writing techniques for spin-wave optical devices, demonstrating magnonic versions of lenses, gratings, and Fourier processors.
Developing spintronic applications for neuromorphic computing with focus on nanoscale material characterization and magnetic tunnel junctions.
First experimental demonstration of a spin-wave lens designed with machine learning optimization techniques.
Selected recent publications in high-impact journals
This work demonstrates focused-ion-beam (FIB) writing as a maskless technique for spin-wave optical devices, showing magnonic versions of lenses, gratings, and Fourier-domain processors.
First experimental realization of a spin-wave lens designed using machine learning optimization techniques.
Demonstration of Rowland-type spectrometer functionality for spin waves using FIB-written gratings.
I'm always open to discussing research collaborations, speaking opportunities, and innovative projects in spintronics and nanomagnetic devices.
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