Guo Rui-Peng, Guo Qing-Hua, Wu Li-Ting, Chen Jing, Fan Dianyuan
Opt Express. 2016 Jun 27;24(13):13788-99. doi: 10.1364/OE.24.013788.
We present a theoretical analysis on optical spin-sensitive Zitterbewegung (ZB) in metamaterials. By developing some formulas about the dispersions and eigenstates of optical modes we show that spin-sensitive ZB can be obtained in a bianisotropic metamaterial with a proper coupling between the electric and magnetic responses. A close analogue of the developed analytical results with these of Dirac equation is proposed. Numerical simulation proves the existence of ZB on the refracted optical beam along a direction determined by the optical spin of incidence. Furthermore, we show that when the incident optical field is linearly polarized, although ZB on field intensity does not exist, the optical spin possesses an interesting spatial split and trembling phenomena. Significance of this investigation is discussed.
我们对超材料中的光学自旋敏感颤动(ZB)进行了理论分析。通过推导一些关于光学模式色散和本征态的公式,我们表明,在电响应和磁响应之间具有适当耦合的双各向异性超材料中,可以获得自旋敏感ZB。我们提出了所推导的分析结果与狄拉克方程结果的紧密类比。数值模拟证明了沿由入射光自旋确定的方向的折射光束上存在ZB。此外,我们表明,当入射光场为线偏振时,尽管场强上不存在ZB,但光自旋具有有趣的空间分裂和颤动现象。我们讨论了这项研究的意义。