• Chinese Optics Letters
  • Vol. 18, Issue 5, 052402 (2020)
Zhiqiang Yang1, Kang Du1, Wending Zhang1, Soojin Chua2、3, and Ting Mei1、*
Author Affiliations
  • 1Key Laboratory of Space Applied Physics and Chemistry, Ministry of Education, and Shaanxi Key Laboratory of Optical Information Technology, School of Science, North Western Polytechnical University, Xi’an 710072, China
  • 2Department of Electrical and Computer Engineering, National University of Singapore, Singapore 117583, Singapore
  • 3LEES Program, Singapore-MIT Alliance for Research & Technology (SMART), Singapore 138602, Singapore
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    DOI: 10.3788/COL202018.052402 Cite this Article Set citation alerts
    Zhiqiang Yang, Kang Du, Wending Zhang, Soojin Chua, Ting Mei. A polarization-insensitive fishnet/spacer/mirror plasmonic absorber for hot electron photodetection application[J]. Chinese Optics Letters, 2020, 18(5): 052402 Copy Citation Text show less
    (a) Schematic diagram of Au grating/TiO2 spacer/Ag mirror structure; (b) schematic diagram of FSM structure; (c), (d) absorption spectrum under different light polarization conditions corresponding to the structures in (a), (b), respectively. The inset in (c) shows the magnetic field distribution under guided mode resonance conditions at λ=442 nm.
    Fig. 1. (a) Schematic diagram of Au grating/TiO2 spacer/Ag mirror structure; (b) schematic diagram of FSM structure; (c), (d) absorption spectrum under different light polarization conditions corresponding to the structures in (a), (b), respectively. The inset in (c) shows the magnetic field distribution under guided mode resonance conditions at λ=442nm.
    Absorption in the FSM structure as a function of wavelength and width of the lines in the fishnet for the different TiO2 thicknesses h of (a) 180 nm, (b) 200 nm, and (c) 220 nm, with t=10 nm and P=200 nm.
    Fig. 2. Absorption in the FSM structure as a function of wavelength and width of the lines in the fishnet for the different TiO2 thicknesses h of (a) 180 nm, (b) 200 nm, and (c) 220 nm, with t=10nm and P=200nm.
    (a) Three-dimensional schematic view of 70 nm width of the lines in the fishnet showing the cross-section along the x–z plane (red plane); (b) calculated electric field profiles in the x–z plane for a single unit cell at FPR2 λ=444 nm, FPR1 λ=690 nm, and at the LSPR λ=830 nm; (c) time-averaged dissipative energy density Q in the x–z plane for a single unit cell at FPR2 λ=444 nm, FPR1 λ=690 nm, and at the LSPR λ=830 nm.
    Fig. 3. (a) Three-dimensional schematic view of 70 nm width of the lines in the fishnet showing the cross-section along the xz plane (red plane); (b) calculated electric field profiles in the xz plane for a single unit cell at FPR2 λ=444nm, FPR1 λ=690nm, and at the LSPR λ=830nm; (c) time-averaged dissipative energy density Q in the xz plane for a single unit cell at FPR2 λ=444nm, FPR1 λ=690nm, and at the LSPR λ=830nm.
    (a) Energy band diagram of the Au–TiO2–Ti–Ag Schottky diode; (b) absorption spectra at the top Au fishnet and Ag mirror of the various systems with TiO2 thicknesses h=180 nm, 200 nm, and 220 nm; (c) responsivity and EQE of the device with TiO2 thicknesses h=180 nm, 200 nm, and 220 nm. All of the responses are under zero bias, and all widths of the lines in the fishnet are kept at 70 nm.
    Fig. 4. (a) Energy band diagram of the AuTiO2TiAg Schottky diode; (b) absorption spectra at the top Au fishnet and Ag mirror of the various systems with TiO2 thicknesses h=180nm, 200 nm, and 220 nm; (c) responsivity and EQE of the device with TiO2 thicknesses h=180nm, 200 nm, and 220 nm. All of the responses are under zero bias, and all widths of the lines in the fishnet are kept at 70 nm.
    Zhiqiang Yang, Kang Du, Wending Zhang, Soojin Chua, Ting Mei. A polarization-insensitive fishnet/spacer/mirror plasmonic absorber for hot electron photodetection application[J]. Chinese Optics Letters, 2020, 18(5): 052402
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