Sankey J C, Braganca P M, Garcia A G F, Krivorotov I N, Buhrman R A, Ralph D C
Cornell University, Ithaca, New York 14853, USA.
Phys Rev Lett. 2006 Jun 9;96(22):227601. doi: 10.1103/PhysRevLett.96.227601. Epub 2006 Jun 5.
We demonstrate a technique that enables ferromagnetic resonance measurements of the normal modes for magnetic excitations in individual nanoscale ferromagnets, smaller in volume by more than a factor of 50 compared to individual ferromagnetic samples measured by other resonance techniques. Studies of the resonance frequencies, amplitudes, linewidths, and line shapes as a function of microwave power, dc current, and magnetic field provide detailed new information about the exchange, damping, and spin-transfer torques that govern the dynamics in magnetic nanostructures.
我们展示了一种技术,该技术能够对单个纳米级铁磁体中的磁激发正常模式进行铁磁共振测量,与通过其他共振技术测量的单个铁磁样品相比,其体积小50倍以上。对共振频率、振幅、线宽和线形随微波功率、直流电流和磁场的变化进行研究,可提供有关控制磁性纳米结构动力学的交换、阻尼和自旋转移扭矩的详细新信息。