Nonlinear magnonic neurons in YIG waveguides realize programmable threshold elements supporting cascadable circuits and seven-neuron pattern recognition of binary 'HUST' letters.
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cond-mat.mtrl-sci 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Stochastic switching near the nonlinear bistable regime of spin waves in a YIG microstrip generates true random bitstreams at 20 Mb/s that pass all NIST SP 800-22 tests and scales to 200-nm waveguides.
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Integrated magnonic neural circuits based on nonlinear wave neurons
Nonlinear magnonic neurons in YIG waveguides realize programmable threshold elements supporting cascadable circuits and seven-neuron pattern recognition of binary 'HUST' letters.
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True random number generation through stochastic magnonic bistability
Stochastic switching near the nonlinear bistable regime of spin waves in a YIG microstrip generates true random bitstreams at 20 Mb/s that pass all NIST SP 800-22 tests and scales to 200-nm waveguides.