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Definite photon deflections of?topological?defects in metasurfaces and symmetry-breaking phase transitions with material loss

机译:超表面中拓扑缺陷的确定光子偏转以及具有材料损失的对称破坏相变

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Combination of topology and general relativity can lead to some profound and farsighted predictions. It is well known that symmetry breaking of the Higgs vacuum field in the early universe possibly induced topological defects in space-time, whose nontrivial effects can provide some clues about the universe’s origin. Here, by using an artificial waveguide bounded with rotational metasurface, the nontrivial effects of a topological defect of spacetime are experimentally emulated. The photon deflection in the topological waveguide has a robust definite angle that does not depend on the location and momentum of incident photons. This is remarkably different from the random optical scattering in trivial space. By including material loss such a topological effect can be well understood from the symmetry breaking of photonic modes. Our technique provides a platform to investigate topological gravity in optical systems. This method can also be extended to obtain many other novel topological photonic devices.
机译:拓扑和广义相对论的结合可以导致一些深刻而有远见的预测。众所周知,早期宇宙中希格斯真空场的对称破坏可能会引起时空拓扑缺陷,其非平凡的影响可以为宇宙起源提供一些线索。在这里,通过使用以旋转超表面为界的人造波导,实验模拟了时空拓扑缺陷的非平凡效应。拓扑波导中的光子偏转具有稳固的确定角度,该角度不取决于入射光子的位置和动量。这与平凡空间中的随机光学散射明显不同。通过包括材料损失,可以从光子模式的对称破坏中很好地理解这种拓扑效应。我们的技术提供了一个研究光学系统中拓扑引力的平台。该方法也可以扩展到获得许多其他新颖的拓扑光子器件。

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