Magnonic Combinatorial Memory
Mykhaylo Balynskyy, Alexander Khitun

TL;DR
This paper introduces a magnonic combinatorial memory device that encodes information in magnetic arrangements and spin wave routes, demonstrating high-density storage potential with experimental validation on a YIG film prototype.
Contribution
It presents a novel magnonic memory architecture utilizing spin wave propagation routes for high-density data storage, validated through proof-of-concept experiments.
Findings
Robust operation with over 35 dB On/Off ratio at room temperature
Memory capacity scales factorially with the number of magnets, enabling Yotta-scale data storage
Experimental demonstration on a YIG film prototype confirms feasibility
Abstract
In this work, we consider a type of magnetic memory where information is encoded into the mutual arrangements of magnets. The device is an active ring circuit comprising magnetic and electronic parts connected in series. The electric part includes a broad-band amplifier, phase shifters, and attenuators. The magnetic part is a mesh of magnonic waveguides with magnets placed on the waveguide junctions. There are amplitude and phase conditions for auto-oscillations to occur in the active ring circuit. The frequency(s) of the auto-oscillation and spin wave propagation route(s) in the magnetic part depends on the mutual arrangement of magnets in the mesh. The propagation route is detected with a set of power sensors. The correlation between circuit parameters and spin wave route is the base of memory operation. The combination of input/output switches connecting electric and magnetic parts,…
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Taxonomy
TopicsMagnetic properties of thin films · Magneto-Optical Properties and Applications · Neural Networks and Applications
