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Controllable excitation of quasi-linear and bullet modes in a spin-Hall nano-oscillator

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arxiv 1901.04197 v1 pith:5JYYMEOA submitted 2019-01-14 cond-mat.mes-hall

Controllable excitation of quasi-linear and bullet modes in a spin-Hall nano-oscillator

classification cond-mat.mes-hall
keywords bulletmodequasi-linearformationmodescurrentcurrentsexcited
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We experimentally demonstrate that both quasi-linear and nonlinear self-localized bullet modes of magnetization auto-oscillation can be excited by dc current in the nano-gap spin Hall nano-oscillator, by utilizing the geometry with an extended gap. The quasi-linear mode is stable at low driving currents, while the bullet mode is additionally excited at larger currents, and becomes increasingly dominant with increasing current. Time-resolved measurements show that the formation of the bullet mode is delayed relative to the quasi-linear mode by up to 100 nanoseconds, demonstrating that the mechanisms of the formation of these modes are fundamentally different. We discuss the relationship between the observed behaviors and the formation of an unstable nonlinear magnon condensate.

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