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Photonic-magnonic crystals: Multifunctional periodic structures for magnonic and photonic applications

机译:光子-磁子晶体:用于镁子和光子应用的多功能周期性结构

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摘要

We investigate the properties of a photonic-magnonic crystal, a complex multifunctional one-dimensional structure with magnonic and photonic band gaps in the GHz and PHz frequency ranges for spin waves and light, respectively. The system consists of periodically distributed dielectric magnetic slabs of yttrium iron garnet and nonmagnetic spacers with an internal structure of alternating TiO_2 and SiO_2 layers which form finite-size dielectric photonic crystals. We show that the spin-wave coupling between the magnetic layers, and thus the formation of the magnonic band structure, necessitates a nonzero in-plane component of the spin-wave wave vector. A more complex structure perceived by light is evidenced by the photonic miniband structure and the transmission spectra in which we have observed transmission peaks related to the repetition of the magnetic slabs in the frequency ranges corresponding to the photonic band gaps of the TiO_2/SiO_2 stack. Moreover, we show that these modes split to very high sharp (a few THz wide) subpeaks in the transmittance spectra. The proposed novel multifunctional artificial crystals can have interesting applications and be used for creating common resonant cavities for spin waves and light to enhance the mutual influence between them.
机译:我们研究了光子-磁子晶体的性质,这是一种复杂的多功能一维结构,分别在自旋波和光的GHz和PHz频率范围内具有磁子和光子带隙。该系统由周期性分布的钇铁石榴石介电磁性平板和非磁性间隔层组成,间隔层的内部结构交替形成TiO_2和SiO_2层,形成有限尺寸的介电光子晶体。我们表明,磁性层之间的自旋波耦合以及由此形成的强磁能带结构需要自旋波矢量的平面内分量不为零。光感知的更复杂的结构由光子微带结构和透射光谱证明,在该光谱中,我们观察到与TiO 2 / SiO_2堆叠的光子带隙相对应的频率范围内与磁性平板重复有关的透射峰。此外,我们显示这些模式在透射光谱中分裂为非常高的尖峰(几个THz宽)亚峰。所提出的新型多功能人造晶体可以具有有趣的应用,并且可以用于为自旋波和光产生共同的谐振腔,以增强它们之间的相互影响。

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  • 来源
    《Journal of Applied Physics》 |2014年第1期|174311.1-174311.12|共12页
  • 作者单位

    Faculty of Physics, Adam Mickiewicz University in Poznan, Umultowska 85, Poznan 61-614, Poland;

    Faculty of Physics, Adam Mickiewicz University in Poznan, Umultowska 85, Poznan 61-614, Poland;

    Donetsk Physical and Technical Institute of the National Academy of Sciences of Ukraine, 83114 Donetsk, Ukraine;

    Donetsk Physical and Technical Institute of the National Academy of Sciences of Ukraine, 83114 Donetsk, Ukraine;

    Donetsk Physical and Technical Institute of the National Academy of Sciences of Ukraine, 83114 Donetsk, Ukraine,Faculty of Physics and Technology, Donetsk National University, 83000 Donetsk, Ukraine;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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