Momentum space toroidal moment in a photonic metamaterial

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Abstract

Berry curvature, the counterpart of the magnetic field in the momentum space, plays a vital role in the transport of electrons in condensed matter physics. It also lays the foundation for the emerging field of topological physics. In the three-dimensional systems, much attention has been paid to Weyl points, which serve as sources and drains of Berry curvature. Here, we demonstrate a toroidal moment of Berry curvature with flux approaching to π in judiciously engineered metamaterials. The Berry curvature exhibits a vortex-like configuration without any source and drain in the momentum space. Experimentally, the presence of Berry curvature toroid is confirmed by the observation of conical-frustum shaped domain-wall states at the interfaces formed by two metamaterials with opposite toroidal moments.

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Yang, B., Bi, Y., Zhang, R. X., Zhang, R. Y., You, O., Zhu, Z., … Zhang, S. (2021). Momentum space toroidal moment in a photonic metamaterial. Nature Communications, 12(1). https://doi.org/10.1038/s41467-021-22063-w

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