论文标题
使用超快光激发对抗铁磁旋转布置的确定性控制
Deterministic control of an antiferromagnetic spin arrangement using ultrafast optical excitation
论文作者
论文摘要
抗磁性旋转型的核心前景是利用铁磁体无法获得的磁性特性。但是,这构成了访问此类属性进行读数和控制的挑战。为此,光诱导的瞬态基态操纵,例如通过改变磁各向异性电位,可以为抗铁磁性的超快确定性控制开放有希望的途径。在这里,我们使用这种方法来触发$ \ it {CORERENT} $旋转,以$ gdrh_2si_2 $中的结晶轴整个远程抗铁磁旋转布置的旋转,并演示$ \ \ it {确定性} $对超级旋转的旋转控制。我们的观察结果可以通过光学激发对GD旋转$'$局部各向异性电位的置换激发来解释,从而可以完整描述这种瞬时磁各向异性电位。
A central prospect of antiferromagnetic spintronics is to exploit magnetic properties that are unavailable with ferromagnets. However, this poses the challenge of accessing such properties for readout and control. To this end, light-induced manipulation of the transient ground state, e.g. by changing the magnetic anisotropy potential, opens promising pathways towards ultrafast deterministic control of antiferromagnetism. Here, we use this approach to trigger a $\it{coherent}$ rotation of the entire long-range antiferromagnetic spin arrangement about a crystalline axis in $GdRh_2Si_2$ and demonstrate $\it{deterministic}$ control of this rotation upon ultrafast optical excitation. Our observations can be explained by a displacive excitation of the Gd spins$'$ local anisotropy potential by the optical excitation, allowing for a full description of this transient magnetic anisotropy potential.