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Manifestation of PT symmetry breaking in polarization space with terahertz metasurfaces

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Authors

Zhang, Shuang
Lawrence, Mark
Xu, Ningning
Zhang, Xueqian
Cong, Longqing
Han, Jiaguang
Zhang, Weili

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American Physical Society

Abstract

By utilizing the vector nature of light as well as the inherent anisotropy of artificial meta-atoms, we investigate parity time symmetry breaking in polarization space using a metasurface with anisotropic absorption, whose building blocks consist of two orthogonally orientated meta-atoms with the same resonant frequency but different loss coefficients. By varying their coupling strength, we directly observe a phase transition in the eigenpolarization states of the system, across which the long axis of the eigenpolarization ellipses experience a sudden rotation of 45°. Despite the lack of rotational symmetry of the metasurface, precisely at the phase transition, known as the exceptional point, the eigenmodes coalesce into a single circularly polarized state. The PT symmetric metasurfaces are experimentally implemented at terahertz frequencies.

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Physical Review Letters

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Open Access

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