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arxiv 1905.12353 v3 pith:XOXNXGBU submitted 2019-05-29 physics.app-ph cond-mat.mes-hall

A magnonic directional coupler for integrated magnonic half-adders

classification physics.app-ph cond-mat.mes-hall
keywords magnonicdirectionalbeencouplerinformationcomputingcouplersencode
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Magnons, the quanta of spin waves, could be used to encode information in beyond-Moore computing applications, and magnonic device components, including logic gates, transistors, and units for non-Boolean computing, have already been developed. Magnonic directional couplers, which can function as circuit building blocks, have also been explored, but have been impractical because of their millimetre dimensions and multi-mode spectra. Here, we report a magnonic directional coupler based on yttrium iron garnet single-mode waveguides of 350 nm width. We use the amplitude of a spin-wave to encode information and to guide it to one of the two outputs of the coupler depending on the signal magnitude, frequency, and the applied magnetic field. Using micromagnetic simulations, we also propose an integrated magnonic half-adder that consists of two directional couplers and processes all information within the magnon domain with aJ energy consumption.

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