Podbielski Jan, Heitmann Detlef, Grundler Dirk
Institut für Angewandte Physik und Mikrostrukturforschungszentrum, Universität Hamburg, Jungiusstrasse 11, D-20355 Hamburg, Germany.
Phys Rev Lett. 2007 Nov 16;99(20):207202. doi: 10.1103/PhysRevLett.99.207202. Epub 2007 Nov 14.
We have studied the spin dynamics of microscopic permalloy rings at GHz frequencies. Increasing the irradiation power, we observe first nonlinear spin dynamics and second microwave-assisted switching (MAS). We explore the MAS phase diagram as a function of microwave power and frequency f and, in particular, extract the critical microwave field hc(f). Its frequency dependence reflects characteristic eigenfrequencies from both the linear and nonlinear spin-wave spectrum. By comparing hc(f) with the different susceptibilities, we gain insight into the microscopic processes which might be the basis of a predictive theory of MAS.
我们研究了纳米坡莫合金环在吉赫兹频率下的自旋动力学。增加辐照功率时,我们首先观察到非线性自旋动力学,其次观察到微波辅助开关(MAS)。我们探索了作为微波功率和频率f函数的MAS相图,特别是提取了临界微波场hc(f)。其频率依赖性反映了线性和非线性自旋波谱中的特征本征频率。通过将hc(f)与不同的磁化率进行比较,我们深入了解了可能作为MAS预测理论基础的微观过程。