Experiment on parity-time-symmetry phase transition in non-Hermitian metasurfaces

Metasurfaces consisting of two orthogonally oriented split-ring resonators with the same resonant frequency but different loss coefficients are proposed to devise a parity-time (PT)-symmetry system. Bovine serum albumin (BSA) solutions with different concentrations are dropped onto the metasurfaces...

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Veröffentlicht in:Journal of the Optical Society of America. B, Optical physics Optical physics, 2022-07, Vol.39 (7), p.1847
Hauptverfasser: Xu, Jingwei, Ouyang, Shoujian, Luo, Laibin, Shen, Yun, Zou, Liner, Tan, Zhiyong, Deng, Xiaohua
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container_issue 7
container_start_page 1847
container_title Journal of the Optical Society of America. B, Optical physics
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creator Xu, Jingwei
Ouyang, Shoujian
Luo, Laibin
Shen, Yun
Zou, Liner
Tan, Zhiyong
Deng, Xiaohua
description Metasurfaces consisting of two orthogonally oriented split-ring resonators with the same resonant frequency but different loss coefficients are proposed to devise a parity-time (PT)-symmetry system. Bovine serum albumin (BSA) solutions with different concentrations are dropped onto the metasurfaces to the realize PT-symmetry phase transitions. Theoretical and experimental results show that eigenstates of the PT system will change from circularly polarized states at the exceptional point to corotating ellipses along ± 45 ∘ when the samples are from the bare metasurfaces to these with BSA, indicating phase transitions. Additionally, potential application of the system in a biosensor is illustrated as the transmission and ellipticity angle θ are sensitive to the concentrations of the BSA solution.
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