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首页> 外文期刊>Physical review, B >Role of electron and phonon temperatures in the helicity-independent all-optical switching of GdFeCo
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Role of electron and phonon temperatures in the helicity-independent all-optical switching of GdFeCo

机译:电子和声子温度在不依赖于螺旋度的GdFeCo全光转换中的作用

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摘要

Ultrafast optical heating of the electrons in ferrimagnetic metals can result in all-optical switching (AOS) of the magnetization. Here we report quantitative measurements of the temperature rise of GdFeCo thin films during helicity-independent AOS. Critical switching fluences are obtained as a function of the initial temperature of the sample and for laser pulse durations from 55 fs to 15 ps. We conclude that nonequilibrium phenomena are necessary for helicity-independent AOS, although the peak electron temperature does not play a critical role. Pump-probe time-resolved experiments show that the switching time increases as the pulse duration increases, with 10 ps pulses resulting in switching times of similar to 13 ps. These results raise new questions about the fundamental mechanism of helicity-independent AOS.
机译:亚铁磁性金属中电子的超快光学加热可导致磁化的全光转换(AOS)。在这里,我们报告了不依赖于螺旋度的AOS期间GdFeCo薄膜的温升的定量测量。根据样品的初始温度以及从55 fs到15 ps的激光脉冲持续时间,可以获得关键的开关注量。我们得出结论,尽管峰值电子温度没有起到关键作用,但非平衡现象对于不依赖于螺旋的AOS是必需的。泵浦时间解析实验表明,开关时间随着脉冲持续时间的增加而增加,其中10 ps脉冲导致的开关时间接近13 ps。这些结果提出了有关独立于螺旋度的AOS的基本机制的新问题。

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