Chinese Optics Letters, Volume. 16, Issue 5, 050004(2018)
Mid-infrared superabsorbers based on quasi-periodic moiré metasurfaces
Fig. 1. (a) Fabrication procedure of MIM moiré superabsorbers with variable parameters (i.e., spacer thickness
Fig. 2. (a) Unit vectors in the hexagonal hole array. (b) A rectangular area in the hexagonal hole array using
Fig. 3. (a) Cross-sectional view of
Fig. 4. (a) Simulated (black dashed line) absorption for a 15° rotation angle pristine (no spacer) moiré metasurface; simulated (dashed red and blue line) and calculated (solid black line) results comparison for a 15° rotation angle moiré MIM structure with 800 nm spacer thickness. The PML boundary is applied in the simulation. (b) Simulated (dashed line) and calculated (solid line) results comparison for different rotation angles at 800 nm spacer thickness. The periodic boundary is applied in the simulation.
Fig. 5. (a) Calculated narrowband absorber with an optimized spacer thickness (1300 nm) at different rotation angles. (b) A calculated broadband absorber with an optimized spacer thickness (900 nm spacer for 10°, 800 nm spacer for 15°, and 700 nm spacer for 20°).
Fig. 6. (a) Simulated polarization-dependent broadband absorption for a 20° moiré MIM structure with an optimized spacer thickness. (b) Simulated polarization-dependent narrowband absorption for a 20° moiré MIM structure with an optimized spacer thickness.
Fig. 7. Simulated visible-NIR absorption spectra of a 10° moiré MIM structure with different spacer thicknesses.
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Yaoran Liu, Zilong Wu, Eric H. Hill, Yuebing Zheng, "Mid-infrared superabsorbers based on quasi-periodic moiré metasurfaces," Chin. Opt. Lett. 16, 050004 (2018)
Special Issue: ADVANCES IN METASURFACES
Received: Dec. 25, 2017
Accepted: Mar. 16, 2018
Published Online: Jul. 4, 2018
The Author Email: Yuebing Zheng (zheng@austin.utexas.edu)