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首页> 外文期刊>Applied Physicsletters >Understanding Eigenfrequency Shifts Observed In Vortex Gyrotropic Motions In A Magnetic Nanodot Driven By Spin-polarized Out-of-plane Dc Current
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Understanding Eigenfrequency Shifts Observed In Vortex Gyrotropic Motions In A Magnetic Nanodot Driven By Spin-polarized Out-of-plane Dc Current

机译:了解自旋极化平面外Dc电流驱动的磁性纳米点在涡旋回旋运动中观察到的本征频移

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摘要

We observed sizable eigenfrequency shifts in spin-polarized dc-current-driven vortex gyrotropic motions in a soft magnetic nanodot, and clarified the underlying physics through micromagnetic numerical calculations. It was found that the vortex eigenfrequency is changed to higher (lower) values with increasing Oersted field (OH) strength associated with the out-of-plane dc current for the vortex chirality parallel (antiparallel) to the rotation sense of the OH circumferential in-plane orientation. The eigenfrequency shift was found to be linearly proportional to the current density j_0 in the linear regime as in Δ_(vD)≈ ± ηj_0/|G|, where G is the gyrovector constant and η is a positive constant, e.g., 1.9×10~(-8) erg/A for a model Permalloy dot of 300 nm diameter and 20 nm thickness. This behavior originates from the sizable contribution of the OH to the effective potential energy of a displaced vortex core in the gyrotropic motion. The present results reveal that v_D, an intrinsic dynamic characteristic of a given nanodot vortex state, is controllable by changes in both the density and direction of spin-polarized out-of-plane dc currents.
机译:我们在软磁纳米点中观察到自旋极化直流电流驱动的涡旋回旋运动中的相当大的本征频移,并通过微磁数值计算阐明了潜在的物理学。已经发现,随着与涡旋手征性平行(反平行)的平面外直流电流相关联的平面外直流电流,涡流本征频率随着较高的奥斯特场(OH)强度而改变为较高(较低)值。平面方向。发现本征频率偏移在线性状态下与电流密度j_0成线性比例,如Δ_(vD)≈±ηj_0/ | G |,其中G为陀螺矢量常数,η为正常数,例如1.9×10对于直径为300 nm,厚度为20 nm的模型坡莫合金点,约为(-8)erg / A。此行为源自OH对在回旋运动中位移的涡旋核的有效势能的巨大贡献。目前的结果表明,v_D是给定纳米点涡旋状态的固有动态特性,可通过自旋极化平面外直流电流的密度和方向的变化来控制。

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