Spin Hall nano-oscillator arrays with up to 105,000 elements achieve mutual synchronization, record output power of 9 nW, and record quality factor of 1.04e6.
Ultra-fast spin Hall nano-oscillator based microwave spectral analysis
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abstract
Ultra-fast spectrum analysis concept based on rapidly tuned spintronic nano-oscillators has been under development for the last few years and has already demonstrated promising results. Here, we demonstrate an ultra-fast microwave spectrum analyzer based on a chain of five mutually synchronized nano-constriction spin Hall nano-oscillators (SHNOs). As mutual synchronization affords the chain a much improved signal quality, with linewidths well below 1 MHz at close to a 10 GHz operating frequency, we observe an order of magnitude better frequency resolution bandwidth compared to previously reported spectral analysis based on single magnetic tunnel junction based spin torque nano-oscillators. The high-frequency operation and ability to synchronize long SHNO chains and large arrays make SHNOs ideal candidates for ultra-fast microwave spectral analysis.
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Ultra-large mutually synchronized networks of 10 nm spin Hall nano-oscillators
Spin Hall nano-oscillator arrays with up to 105,000 elements achieve mutual synchronization, record output power of 9 nW, and record quality factor of 1.04e6.