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Measuring Entropy Generated by Spin-Transfer

机译:测量自旋转移产生的熵

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We present an experimental protocol that allows the entropy generated by spin-transfer to be measured. We investigate the effect of strong spin injection on a ferromagnetic nanostructure, focusing on the quasi-static equilibrium states of a single magnetic domain. We measure the response of the magnetoresistance to a temperature excitation as a function of the magnetic field for different values of the injected current. This quantity is related to the thermal susceptibility of the ferromagnetic wire through the anisotropic magnetoresistance. We deduce the ferromagnetic entropy generated by spin injection by a thermodynamic Maxwell relation. We applied this protocol to single contacted Ni nanowires obtained by electrodeposition in a nanoporous template. We observe that the entropy produced by the spin injection is a linear function of the current and reaches 60% of the initial entropy of the system for 5 × 107 A/cm2. This study shows that the effect of the spin-transfer in these samples results in the generation of incoherent excitations instead of rotation of the magnetization.
机译:我们提出了一种实验协议,可以测量自旋转移产生的熵。我们研究强自旋注入对铁磁纳米结构的影响,重点是单个磁畴的准静态平衡态。对于注入电流的不同值,我们测量磁阻对温度激励的响应与磁场的关系。该量与通过各向异性磁阻的铁磁线的热敏感性有关。我们根据热力学麦克斯韦关系推论了自旋注入产生的铁磁熵。我们将此协议应用于通过电沉积在纳米多孔模板中获得的单接触Ni纳米线。我们观察到,自旋注入产生的熵是电流的线性函数,并达到系统的初始熵的60%,即5ƒ-107A / cm2。这项研究表明,这些样品中的自旋转移效应导致产生非相干激发,而不是磁化强度旋转。

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