The oscillatory interlayer exchange interaction between two magnetic layers separated by a metallic spacer is one of the few coherent quantum phenomena that persist at room temperature. Here we show that this interaction can be controlled dynamically by illuminating the sample (e.g. a spin valve) with radiation in the 10-100 THz range. We predict that the exchange interaction can be changed from ferromagnetic to anti-ferromagnetic (and vice versa) by tuning the amplitude and/or the frequency of the radiation. Our chief theoretical result is an expression that relates the dynamical exchange interaction to the static one that has already been extensively measured.
@article{arxiv.1610.03391,
title = {Control of the Oscillatory Interlayer Exchange Interaction with Terahertz Radiation},
author = {Uta Meyer and Geraldine Haack and Christoph Groth and Xavier Waintal},
journal= {arXiv preprint arXiv:1610.03391},
year = {2017}
}