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Dyakonov surface magnons and magnon polaritons

机译:Dyakonov表面肿块和Magnon Polaritons

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摘要

We predicted one Dyakonov surface magnon (DSM) and two Dyakonov magnon polaritons (DSMPs) localized at the antiferromagnet (AF)-air interface. Their concise dispersion equations and necessary conditions of existence were obtained. The DSM is the magnetostatic limit of the first DSMP, which are situated inside the AF reststrahlen frequency band. The second DSMP has no magnetostatic limit and lies outside the frequency band. The specifical frequency ranges occupied by the DSM and DSMPs were analytically found. The DSMPs are hybrid-polarization surface polaritons and the DSM is a hybrid-polarization surface magnetostatic mode. The first DSMP possesses large attenuation constants so that it is highly localized at the surface. Compared with it, the second DSMP exhibits relatively small attenuation constants. According to the features of polarization obtained for either DSMP, we used the TE and TM radiations incident on the AF surface to calculate attenuated total reflection (ATR) spectra, respectively. These ATR spectra not only further prove the existence of the DSMPs but also demonstrate their observability in experiment. However, the DSM should be detected by means of a light-scattering technique.
机译:我们预测了一个Dyakonov表面肿大(DSM)和两个Dyakonov Magnon Polaritons(DSMPS),位于Antiferromagnet(AF) - Aherion界面。它们的简洁分散方程得到了获得的存在条件。 DSM是第一DSMP的静磁极限,其位于AF RESTRAHLEN频带内。第二个DSMP没有静磁极限并位于频段外部。发现了DSM和DSMP占用的细节范围。 DSMP是混合偏振表面极化子,DSM是混合偏振表面磁滞模式。第一DSMP具有大的衰减常数,使其在表面上高度本地化。与它相比,第二DSMP表现出相对小的衰减常数。根据为DSMP获得的极化的特征,我们使用入射在AF表面上的TE和TM辐射,以分别计算衰减的全反射(ATR)光谱。这些ATR光谱不仅进一步证明了DSMP的存在,而且还证明了它们在实验中的可观察性。但是,应通过光散射技术检测DSM。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第4期|045407.1-045407.9|共9页
  • 作者单位

    Key Laboratory for Photonic and Electronic Bandgap Materials Chinese Ministry of Education and School of Physics and Electronic Engineering Harbin Normal University Harbin 150025 China;

    Key Laboratory for Photonic and Electronic Bandgap Materials Chinese Ministry of Education and School of Physics and Electronic Engineering Harbin Normal University Harbin 150025 China;

    Key Laboratory for Photonic and Electronic Bandgap Materials Chinese Ministry of Education and School of Physics and Electronic Engineering Harbin Normal University Harbin 150025 China;

    Key Laboratory for Photonic and Electronic Bandgap Materials Chinese Ministry of Education and School of Physics and Electronic Engineering Harbin Normal University Harbin 150025 China;

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