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All-optical magnetization switching by counterpropagataion or two-frequency pulses using the plasmon-induced inverse Faraday effect in magnetoplasmonic structures

机译:通过在磁正极结构中的等离子体诱导的逆辐射效应来切换All-光学磁化或双频脉冲切换

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摘要

In this Rapid Communication, we study the generation of quasistatic magnetic fields by the plasmon-induced inverse Faraday effect and present analytical and numerical results for the computation of the induced magnetic field distributions in magnetoplasmonic waveguides. We show that the magnetization of a magnetic area can be reversed within sub-picosecond time in nanoconfined magnetoplasmonic waveguides by surface plasmon polaritions (SPP) and the magnetization can be switched back by a SPP propagating into the opposite direction. In addition, we study a magneto-optical dielectric cavity side coupled to a metal-insulator-metal (MIM) waveguide and show that magnetization switching can be implemented in this structure by SPPs generated by two-frequency pulses as well as by counter-propagating SPPs. These phenomena could open up a new energy-efficient ultrafast method for nanoconfined all-optical magnetization switching.
机译:在这种快速通信中,我们研究了等离子体诱导的反向法拉第效应的产生了Quasistatic磁场,并对磁性转化波导中的诱导磁场分布的计算进行了分析和数值结果。我们表明,磁性面积的磁化可以通过表面等离子体偏振(SPP)在纳米核磁体上磁性波导中在亚型磁体上的时间内反转,并且可以通过传播到相反方向的SPP将磁化切换回来。此外,我们研究了耦合到金属 - 绝缘体 - 金属(MIM)波导的磁光介电腔侧,并示出了通过由两个频率脉冲产生的SPP和通过反传播,可以在该结构中实现磁化切换SPP。这些现象可以开辟了一种新的节能超快方法,用于纳米织物全光磁化切换。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2019年第4期|041401.1-041401.5|共5页
  • 作者单位

    Kim Il Sung Univ Dept Phys Taesong Dist 023814410 Pyongyang North Korea;

    Kim Il Sung Univ Dept Phys Taesong Dist 023814410 Pyongyang North Korea;

    Kim Il Sung Univ Dept Phys Taesong Dist 023814410 Pyongyang North Korea;

    Kim Il Sung Univ Dept Phys Taesong Dist 023814410 Pyongyang North Korea;

    Max Born Inst Nonlinear Opt & Short Pulse Spect Max Born Str 2a D-12489 Berlin Germany;

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  • 入库时间 2022-08-18 22:19:15

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