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首页> 外文期刊>Physical review, B >Ultrafast magnetization dynamics in an epitaxial Ni(54.3)Mn(31.9)Sn(13.8 )Heusler-alloy film close to the Curie temperature
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Ultrafast magnetization dynamics in an epitaxial Ni(54.3)Mn(31.9)Sn(13.8 )Heusler-alloy film close to the Curie temperature

机译:外延Ni(54.3)Mn(31.9)Sn(31.8)的超快磁化动力学(31.8)Heusler-合金薄膜接近居里温度

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摘要

The influence of the amplitude of an external magnetic field (H) and femtosecond laser pulse fluence (F) on ultrafast magnetization dynamics has been investigated in a ferromagnetic Ni54.3Mn31.9Sn13.8 Heusler-alloy film using the time-resolved magneto-optical Kerr effect. A large slowing down of the demagnetization process was observed and characteristic parameters of magnetization precession were determined for a wide range of H and F values. Long demagnetization times of the order of hundreds of picoseconds have been found and explained as a result of the Curie temperature (T-C) proximity in the alloy film studied. Effective magnetic anisotropy field (H-k(eff)) and Gilbert damping parameter dependencies were determined. A significant reduction of the precession frequency versus F of the uniform Kittel mode was found. A strong decrease of H-k(eff) with F was well simulated in the frame of an extended version of the microscopic three-temperature model (eM3TM), and explained by the T-C proximity effect. The estimated low values of the eM3TM model parameters, the demagnetization rate and electron-lattice coupling constant, appeared essential to explain the slowing down effect of demagnetization. Precession amplitude dependencies were explained by a phenomenological approach taking into account H-k(eff) and changes of the equilibrium magnetization angles induced by pump-pulse excitation.
机译:的外部磁场(H)和飞秒激光脉冲能流(F)上的超快磁化动力学的振幅的影响已在铁磁Ni54.3Mn31.9Sn13.8休斯勒合金膜使用了研究时间分辨磁光克尔效应。观察到退磁处理的一个大的减速和确定用于一个宽范围的H和F值的磁化进动的特征参数。已发现和在所研究的合金膜的居里温度(T-C)接近的结果说明几百皮秒的数量级的长退磁倍。有效的各向异性磁场(H-K(EFF))和Gilbert阻尼参数的依赖关系进行测定。进动频率对均匀基特尔模式f的显著减少被发现。 H-K(EFF)与f的强减少被很好地模拟在微观三温度模型(eM3TM)的扩展版本的帧,然后通过T-C邻近效应说明。该eM3TM模型参数的估计值低,退磁率和电子晶格耦合常数,看来必须解释退磁的减速效果。进动幅度的依赖关系是由一现象学方法服用说明考虑H-K(EFF)和角度由泵脉冲激发诱导平衡磁化的变化。

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  • 来源
    《Physical review, B》 |2019年第18期|共11页
  • 作者单位

    Univ Bialystok Fac Math &

    Informat K Ciolkowskiego 1M PL-15245 Bialystok Poland;

    Univ Bialystok Fac Math &

    Informat K Ciolkowskiego 1M PL-15245 Bialystok Poland;

    AMU NanoBioMed Ctr Wszechnicy Piastowskiej 3 PL-61614 Poznan Poland;

    Univ Bialystok Fac Math &

    Informat K Ciolkowskiego 1M PL-15245 Bialystok Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学;
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