• Photonics Research
  • Vol. 10, Issue 1, 248 (2022)
Woo-Bin Lee1、2, Chul-Soon Im2, Changyi Zhou1、2, Bishal Bhandari1、2, Duk-Yong Choi3, and Sang-Shin Lee1、2、*
Author Affiliations
  • 1Department of Electronic Engineering, Kwangwoon University, Seoul 01897, Republic of Korea
  • 2Nano Device Application Center, Kwangwoon University, Seoul 01897, Republic of Korea
  • 3Laser Physics Centre, Research School of Physics, Australian National University, Canberra, ACT 2601, Australia
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    DOI: 10.1364/PRJ.433024 Cite this Article Set citation alerts
    Woo-Bin Lee, Chul-Soon Im, Changyi Zhou, Bishal Bhandari, Duk-Yong Choi, Sang-Shin Lee. Metasurface doublet-integrated bidirectional grating antenna enabling enhanced wavelength-tuned beam steering[J]. Photonics Research, 2022, 10(1): 248 Copy Citation Text show less
    Schematic configuration of the proposed BDGA incorporating an MD, enabling an enhanced beam-steering efficiency in the longitudinal direction.
    Fig. 1. Schematic configuration of the proposed BDGA incorporating an MD, enabling an enhanced beam-steering efficiency in the longitudinal direction.
    (a) Configuration of the proposed BDGA and its operation that extends the beam-steering range. (b) Calculated spectral emission response with respect to the grating period for a 2D modeled BDGA for hBOX=4 μm.
    Fig. 2. (a) Configuration of the proposed BDGA and its operation that extends the beam-steering range. (b) Calculated spectral emission response with respect to the grating period for a 2D modeled BDGA for hBOX=4  μm.
    (a) Configuration of the proposed MD, comprising MS1 and MS2, facilitating the magnification of the beam-steering range. A meta-atom (or unit cell) and the highly confined magnetic field are also included. (b) Designed phase profile of the MD and (c) SEM images of the fabricated MS1 and MS2.
    Fig. 3. (a) Configuration of the proposed MD, comprising MS1 and MS2, facilitating the magnification of the beam-steering range. A meta-atom (or unit cell) and the highly confined magnetic field are also included. (b) Designed phase profile of the MD and (c) SEM images of the fabricated MS1 and MS2.
    (a) Experimental setup to inspect the performance of the prepared BDGA. (b) Captured intensity profiles of the wavelength-tuned main beam. (c) Observed emission angles corresponding to the main beam in terms of the wavelength.
    Fig. 4. (a) Experimental setup to inspect the performance of the prepared BDGA. (b) Captured intensity profiles of the wavelength-tuned main beam. (c) Observed emission angles corresponding to the main beam in terms of the wavelength.
    Measured emission efficiency of the main beam versus the wavelength.
    Fig. 5. Measured emission efficiency of the main beam versus the wavelength.
    (a) Test setup to examine the beam deflection based on the MD with the incident angle. (b) Measured deflection angle and deflection efficiency. (c) Relative deflected beam power as a function of the incident angle.
    Fig. 6. (a) Test setup to examine the beam deflection based on the MD with the incident angle. (b) Measured deflection angle and deflection efficiency. (c) Relative deflected beam power as a function of the incident angle.
    (a) Side and top views of the BDGA integrated with the MD. (b) Captured intensity profiles of the main beam radiated from BDGA without and with the MD. (c) Measured beam emission angle versus the wavelength. (d) Measured total efficiency of the main beam deflected by the MD versus the wavelength.
    Fig. 7. (a) Side and top views of the BDGA integrated with the MD. (b) Captured intensity profiles of the main beam radiated from BDGA without and with the MD. (c) Measured beam emission angle versus the wavelength. (d) Measured total efficiency of the main beam deflected by the MD versus the wavelength.
    Woo-Bin Lee, Chul-Soon Im, Changyi Zhou, Bishal Bhandari, Duk-Yong Choi, Sang-Shin Lee. Metasurface doublet-integrated bidirectional grating antenna enabling enhanced wavelength-tuned beam steering[J]. Photonics Research, 2022, 10(1): 248
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