论文标题

从电感耦合天线的电噪声中测量自旋波的群体

Measuring a population of spin waves from the electrical noise of an inductively coupled antenna

论文作者

Devolder, T., Ngom, S. -M., Mouhoub, A., Létang, J., Kim, J. -V., Crozat, P., Adam, J. -P., Solignac, A., Chappert, C.

论文摘要

我们研究了如何通过分析位于其附近的电感天线传递的电微波噪声的分析来表征旋转波的群体。测量值是在合成的抗铁磁细条上进行的,该条带被微米大小的天线覆盖,该条纹在扩增后供应频谱分析仪。天线噪声包含两个贡献。不一致的自旋波的种群产生了一个由天线感应的波动场:这是“镁噪声”。天线噪声还包含电子波动的贡献:Johnson-Nyquist噪声。后者取决于测量电路中的所有阻抗,其中包括天线自态。结果,电子噪声包含有关条带的磁敏感性的信息,尽管它没有告知磁波的绝对振幅。对于热平衡处的微米大小的系统,无法确定电子噪声主导和纯镁噪声。如果相比之下,SpinWave浴室与测量电路不处于热平衡状态,并且如果可以更改自旋波总体,则可以在实施特定的预防措施的情况下测量模式分辨有效的木量温度。

We study how a population of spin waves can be characterized from the analysis of the electrical microwave noise delivered by an inductive antenna placed in its vicinity. The measurements are conducted on a synthetic antiferromagnetic thin stripe covered by a micron-sized antenna that feeds a spectrum analyser after amplification. The antenna noise contains two contributions. The population of incoherent spin waves generates a fluctuating field that is sensed by the antenna: this is the "magnon noise". The antenna noise also contains the contribution of the electronic fluctuations: the Johnson-Nyquist noise. The latter depends on all impedances within the measurement circuit, which includes the antenna self-inductance. As a result, the electronic noise contains information about the magnetic susceptibility of the stripe, though it does not inform on the absolute amplitude of the magnetic fluctuations. For micrometer-sized systems at thermal equilibrium, the electronic noise dominates and the pure magnon noise cannot be determined. If in contrast the spinwave bath is not at thermal equilibrium with the measurement circuit, and if the spin wave population can be changed then one could measure a mode-resolved effective magnon temperature provided specific precautions are implemented.

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