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Size-dependent ultrafast magnetization dynamics in iron oxide (Fe3O4) nanocrystals

机译:氧化铁(Fe3O4)纳米晶体中尺寸相关的超快磁化动力学

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摘要

Optically induced ultrafast demagnetization and its recovery in superparamagnetic colloidal iron oxide (Fe3O4) nanocrystals have been investigated via time-resolved Faraday rotation measurements. Optical excitation with near-infrared laser pulse resulted in ultrafast demagnetization in similar to 100 fs via the destruction of ferrimagnetic ordering. The degree of demagnetization increased with the excitation density, and the complete demagnetization reached at similar to 10% excitation density. The magnetization recovered on two time scales, several picoseconds and hundreds of picoseconds, which can be associated with the initial reestablishment of the ferrimagnetic ordering and the electronic relaxation back to the ground state, respectively. The amplitude of the slower recovery component increased with the size of the nanocrystals, suggesting the size-dependent ferrimagnetic ordering throughout the volume of the nanocrystal.
机译:通过时间分辨法拉第旋转测量研究了光诱导超快退磁及其在超顺磁性胶体氧化铁(Fe3O4)纳米晶体中的恢复。通过破坏亚铁磁有序性,用近红外激光脉冲进行光激发导致超快退磁,类似于100 fs。退磁程度随激励密度的增加而增加,完全退磁达到接近10%的激励密度。磁化强度在两个皮秒和几百皮秒的时间尺度上恢复,这可以分别与亚铁磁有序的初始重建和电子弛豫回到基态有关。恢复慢的组分的振幅随纳米晶体的尺寸而增加,表明在整个纳米晶体的体积中尺寸依赖的亚铁磁有序。

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