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Photoinduced magnetization enhancement in two-dimensional weakly anisotropic Heisenberg magnets

机译:二维弱各向异性海森堡磁体中的光致磁化增强

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摘要

By comparing the photoinduced magnetization dynamics in simple layered systems we show how light-induced modifications of the magnetic anisotropy directly enhance the magnetization. It is observed that the spin precession in (CH_3NH_3)_2CuCl_4, initiated by a light pulse, increases in amplitude at the critical temperature T_c. The phenomenon is related to the dependence of the critical temperature on the axial magnetic anisotropy. The present results underline the possibility and the importance of the optical modifications of the anisotropy, opening different paths toward the control of the magnetization state for ultrafast memories.
机译:通过比较简单分层系统中的光感应磁化动力学,我们显示了磁各向异性的光感应修饰如何直接增强磁化强度。可以看出,由光脉冲引发的(CH_3NH_3)_2CuCl_4中的自旋进动在临界温度T_c时振幅增加。该现象与临界温度对轴向磁各向异性的依赖性有关。目前的结果强调了各向异性光学修饰的可能性和重要性,为超快存储器开辟了控制磁化状态的不同途径。

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