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Terahertz Magnon-Polaritons in TmFeO3

机译:TmFeO3中的太赫兹麦格农-保乐酮

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摘要

Magnon-polaritons are shown to play a dominant role in the propagation of terahertz (THz) waves through TmFeO3 orthoferrite, if the frequencies of the waves are in the vicinity of the quasi-antiferromagnetic spin resonance mode. Both time-domain THz transmission and emission spectroscopies reveal clear beatings between two modes with frequencies slightly above and slightly below this resonance, respectively. Rigorous modeling of the interaction between the spins of TmFeO3 and the THz light shows that the frequencies correspond to the upper and lower magnon-polariton branches. Our findings reveal the previously ignored importance of propagation effects and polaritons in such heavily debated areas as THz magnonics and THz spectroscopy of electromagnons. It also shows that future progress in these areas calls for an interdisciplinary approach at the interface between magnetism and photonics.
机译:磁非极化子在太赫兹(THz)波通过TmFeO3正铁氧体的传播中起着主导作用,如果波的频率在准反磁自旋共振模式附近。时域太赫兹透射和发射光谱学都揭示了两种模式之间的清晰跳动,其频率分别略高于和略低于该共振。对TmFeO3自旋和太赫兹光之间相互作用的严格建模表明,频率分别对应于上,下磁子极化子分支。我们的研究结果揭示了在诸如THz磁振子和电子磁振子的THz光谱学之类争议激烈的领域中,传播效应和极化子的重要性被人们忽略了。它还表明,这些领域的未来发展要求在磁性和光子学之间的界面上采用跨学科方法。

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