Weigand Markus, Van Waeyenberge Bartel, Vansteenkiste Arne, Curcic Michael, Sackmann Vitalij, Stoll Hermann, Tyliszczak Tolek, Kaznatcheev Konstantine, Bertwistle Drew, Woltersdorf Georg, Back Christian H, Schütz Gisela
Max-Planck-Institut für Metallforschung, 70569 Stuttgart, Germany.
Phys Rev Lett. 2009 Feb 20;102(7):077201. doi: 10.1103/PhysRevLett.102.077201. Epub 2009 Feb 17.
The response of magnetic vortex cores to subnanosecond in-plane magnetic field pulses was studied by time-resolved x-ray microscopy. Vortex core reversal was observed and the switching events were located in space and time. This revealed a mechanism of coherent excitation by the leading and trailing edges of the pulse, lowering the field amplitude required for switching. The mechanism was confirmed by micromagnetic simulations and can be understood in terms of gyration around the vortex equilibrium positions, displaced by the applied field.
通过时间分辨X射线显微镜研究了磁涡旋核对外纳秒面内磁场脉冲的响应。观察到涡旋核反转,并确定了开关事件的时空位置。这揭示了一种由脉冲的前沿和后沿进行相干激发的机制,降低了开关所需的场幅度。该机制通过微磁模拟得到证实,并且可以从围绕由外加磁场位移的涡旋平衡位置的回转角度来理解。