Photonics Research, Volume. 10, Issue 4, 896(2022)
Arbitrary large-gradient wavefront shaping: from local phase modulation to nonlocal diffraction engineering
Fig. 1. (a) Schematic of wavefront shaping through a metasurface. (b) Implementation of the desired continuous phase profile (solid curve) using the LPM method. The discretized phases are shown by the dots. Each of them is implemented by a subwavelength element shown below the phase curve. (c) Implementation of the desired continuous phase profile (solid curve) using the nLDM method. The desired phase profile is divided into several segments (shown by different colors) according to the
Fig. 2. Metalenses for high-NA focusing with (a) a single focal spot and (b) four focal spots. The desired phase profiles of metalenses 1 and 2 folded within
Fig. 3. (a) Photograph of 3D-printed metalens 1 and its designed cross section. (b) Photograph of 3D-printed metalens 2 and its designed cross section. The segments analyzed in Fig.
Fig. 4. (a) Simulated and (b) measured total electric field intensity distribution of metalens 1 in the
Fig. 5. (a) Photograph of 3D-printed polarization-insensitive metalens 3 with
Fig. 6. (a) Target phase profile (black) of metalens 1 and the reproduced phase segments (red) by the optimized metagratings. (b) Summarized diffraction efficiencies and phases of the
Fig. 7. Detailed comparison of the target and reproduced phase segments of different shapes. (a) The first segment in Fig.
Fig. 8. (a) Transmission and phase response of subwavelength PLA elements with different duty cycles. The stars show eight elements with fixed phase difference of
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Xipu Dong, Jierong Cheng, Yiwu Yuan, Zhenyu Xing, Fei Fan, Xianghui Wang, Shengjiang Chang, "Arbitrary large-gradient wavefront shaping: from local phase modulation to nonlocal diffraction engineering," Photonics Res. 10, 896 (2022)
Category: Optical Devices
Received: Jul. 19, 2021
Accepted: Feb. 1, 2022
Published Online: Mar. 11, 2022
The Author Email: Jierong Cheng (chengjr@nankai.edu.cn)