Photonics Research, Volume. 9, Issue 11, 2190(2021)
Control of angular dispersion in dielectric gratings for multifunctional wavefront shaping and dynamic polarization conversion
Fig. 1. (a) Schematic of multifunctional wavefront shaping via the rotation of the cylindrical metalens composed of nonuniform gratings. The focal length shifts with the incident angle. (b) Photograph of the metalens. (c) Schematic of multifunctional polarization control via the rotation of the uniform grating around the
Fig. 2. Modulation of angular dispersion in gratings by tuning the number of excited waveguide modes. (a) Field distribution in a grating with
Fig. 3. (a) Ideal phase profiles of the metalens with 150 mm focal length (purple line) at 0° incident angle and 100 mm focal length (yellow line) at 45° incident angle. Dots are discrete phase distribution of the selected grating units under different incident angles. (b) Simulated field distribution with 0° excitation using Lumerical FDTD Solutions. (c) Measured field distribution with 0° excitation. (d) Simulated field distribution with 45° excitation using Lumerical FDTD Solutions. (e) Measured field distribution with 45° excitation.
Fig. 4. Variation of the transmission phase of (a) TE and (b) TM polarizations with the incident angle and the grating period when
Fig. 5. Simulated and experimentally measured intensity distribution by rotating the polarizer before the detector with and without the gratings with different incident angles realized by tilting the sample.
Fig. 6. Simulated and experimentally measured intensity modulation by electrically rotating the grating and inserting a polarizer.
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Yiwu Yuan, Jierong Cheng, Fei Fan, Xianghui Wang, Shengjiang Chang, "Control of angular dispersion in dielectric gratings for multifunctional wavefront shaping and dynamic polarization conversion," Photonics Res. 9, 2190 (2021)
Category: Optical Devices
Received: Jun. 11, 2021
Accepted: Sep. 10, 2021
Published Online: Oct. 14, 2021
The Author Email: Jierong Cheng (chengjr@nankai.edu.cn)