Photonic Spin Hall Effect in Waveguides Composed of Two Types of Single-Negative Metamaterials

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Abstract

The polarization controlled optical signal routing has many important applications in photonics such as polarization beam splitter. By using two-dimensional transmission lines with lumped elements, we experimentally demonstrate the selective excitation of guided modes in waveguides composed of two kinds of single-negative metamaterials. A localized, circularly polarized emitter placed near the interface of the two kinds of single-negative metamaterials only couples with one guided mode with a specific propagating direction determined by the polarization handedness of the source. Moreover, this optical spin-orbit locking phenomenon, also called the photonic spin Hall effect, is robust against interface fluctuations, which may be very useful in the manipulation of electromagnetic signals.

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Guo, Z., Jiang, H., Long, Y., Yu, K., Ren, J., Xue, C., & Chen, H. (2017). Photonic Spin Hall Effect in Waveguides Composed of Two Types of Single-Negative Metamaterials. Scientific Reports, 7(1). https://doi.org/10.1038/s41598-017-08171-y

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