Photonics Research, Volume. 9, Issue 8, 1540(2021)
Negative refraction of ultra-squeezed in-plane hyperbolic designer polaritons
Fig. 1. Anisotropic-
Fig. 2. Measured magnetic field distributions and iso-frequency contours. (a) Measured magnetic patterns of
Fig. 3. Achieving an ultra-high squeezing factor in our hyperbolic metasurface. (a) Retrieved squeezing factors of the designer polaritons from simulated and experimental results. An ultra-high squeezing factor of 129 at
Fig. 4. Experimental validation of all-angle in-plane negative refraction of ultra-high-
Fig. 5. Side and top views of magnetic field distributions of eigenmodes, respectively. The color bar measures the amplitude of the magnetic field.
Fig. 6. Influence of different geometry parameters on the magnetic hyperbolic polaritons. (a) Dispersions of the metasurface with different periodicity along the
Fig. 7. Analytical and simulated iso-frequency contours. (a) Iso-frequency contours obtained from theoretical analysis. (b) Iso-frequency contours obtained from numerical simulations. The frequency values are normalized by
Fig. 8. (a) Measured momentum space at
Fig. 9. Design of a far-infrared hyperbolic metasurface. (a) Schematic of a far-infrared hyperbolic metasurface consisting of coiling silver wires. Yellow area: coiling silver wires. White dashed line: a unit cell. Here, the brown area represents air in order to make the structure look clear. (b) Details of a unit cell. Here,
Fig. 10. Experimental setup. (a) A source, which is a broadband antenna, is directly welded on a coil unit cell at the metasurface edge. Green resin structure is used to sustain the hyperbolic metasurface. (b) A detector is a compact coil antenna with magnetic resonance around
Fig. 11. Scheme view of the fields around the hyperbolic metasurface and the coil antenna as a detector.
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Qiaolu Chen, Yihao Yang, Li Zhang, Jialin Chen, Min Li, Xiao Lin, Rujiang Li, Zuojia Wang, Baile Zhang, Hongsheng Chen, "Negative refraction of ultra-squeezed in-plane hyperbolic designer polaritons," Photonics Res. 9, 1540 (2021)
Category: Surface Optics and Plasmonics
Received: Mar. 10, 2021
Accepted: Jun. 14, 2021
Published Online: Jul. 28, 2021
The Author Email: Yihao Yang (yangyihao@zju.edu.cn), Baile Zhang (blzhang@ntu.edu.sg), Hongsheng Chen (hansomchen@zju.edu.cn)