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Spin-transfer-assisted parametric pumping of magnons in yttrium iron garnet

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arxiv 2202.03247 v2 pith:4UOQNIHW submitted 2022-02-07 cond-mat.mes-hall

Spin-transfer-assisted parametric pumping of magnons in yttrium iron garnet

classification cond-mat.mes-hall
keywords pumpingparametrictorquecombinationexcitationsgarnetinstabilitiesiron
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The combination of parametric pumping and spin-transfer torque is a powerful approach that enables high-level control over magnetic excitations in thin-film ferromagnets. The excitation parameters, such as pumping power and external field strength, affect the instabilities of individual magnon modes. We theoretically explore how the simultaneous effects of parametric pumping and spin transfer torque influence these magnetic instabilities in a thin-film ferromagnet. Within the Landau-Lifshitz-Gilbert framework, we perform micromagnetic simulations of magnon excitations in yttrium iron garnet by pumping, spin transfer torque, and a combination of the two. We find that consistent with experimental results, the magnitude and direction of the spin-transfer torque tune the parametric instability thresholds.

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