Centre de Nanosciences et de Nanotechnologies, CNRS, Univ. Paris-Sud, Université Paris-Saclay, 91120 Palaiseau, France.
Chaire Photonique, CentraleSupélec, Université Paris-Saclay, 57070 Metz, France.
Phys Rev Lett. 2019 Oct 4;123(14):147701. doi: 10.1103/PhysRevLett.123.147701.
We present an experimental study of spin-torque driven vortex self-oscillations in magnetic nanocontacts. We find that, above a certain threshold in applied currents, the vortex gyration around the nanocontact is modulated by relaxation oscillations, which involve periodic reversals of the vortex core. This modulation leads to the appearance of commensurate but also, more interestingly here, incommensurate states, which are characterized by devil's staircases in the modulation frequency. We use frequency- and time-domain measurements together with advanced time-series analyses to provide experimental evidence of chaos in incommensurate states of vortex oscillations, in agreement with theoretical predictions.
我们提出了一项关于在磁性纳米触点中自旋扭矩驱动的涡旋自激振荡的实验研究。我们发现,在施加电流的某个阈值以上,涡旋围绕纳米触点的旋转会受到弛豫振荡的调制,其中包括涡核的周期性反转。这种调制导致了同步的但更有趣的是,不同步的状态的出现,其特征是调制频率中的魔鬼阶梯。我们使用频域和时域测量以及先进的时间序列分析,提供了在涡旋振荡的不同步状态中混沌的实验证据,与理论预测相符。