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Electrically Reconfigurable Active Metasurface for 3D Distance Ranging | IEEE Conference Publication | IEEE Xplore

Electrically Reconfigurable Active Metasurface for 3D Distance Ranging


Abstract:

For the first time, we have successfully demonstrated a 3-dimensional (3-D) depth scan using an electrically-tunable active metasurface, which is an array of plasmonic re...Show More

Abstract:

For the first time, we have successfully demonstrated a 3-dimensional (3-D) depth scan using an electrically-tunable active metasurface, which is an array of plasmonic resonators with an active indium-tin-oxide (ITO) layer. Our active device can steer a beam in reflection with a positive side-mode suppression ratio by independently controlling the amplitude and the phase from 0 to 360° using two separate bias controls. These are very promising results for small and high speed 3D depth sensing for mobile and automotive applications.
Date of Conference: 12-18 December 2020
Date Added to IEEE Xplore: 11 March 2021
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Conference Location: San Francisco, CA, USA
Citations are not available for this document.

I. Introduction

The ability to control the amplitude and phase of incident light has enabled crucial applications such as 3-dimensional display, digital hologram, biomedical imaging, and light detection and ranging (LiDAR) for autonomous driving [1]. Recently, metasurfaces which are flat layers composed of optical nano-structures have been demonstrated to control the transmitted or reflected light in the subwavelength scale [2]. Active metasurfaces have attracted significant interest because of their potential for ultrafast, wide field-of-view and high-resolution wavefront shaping in a compact form. However, low phase modulation ranges below 360° [3]-[6] and amplitude-dependent phase change are the main hurdles for most application. Moreover, a large, individually addressable array of active metasurfaces with more versatility and flexibility have not yet been demonstrated in the optical regime. Here, we demonstrate distance measurement and 3-dimensional (3D) depth scan using a fully capable electrically active multi-channel metasurface in the near infrared (NIR) regime.

Cites in Papers - |

Cites in Papers - Other Publishers (2)

1.
Jie Ma, Shenglong Zhuo, Lei Qiu, Yuzhu Gao, Yifan Wu, Ming Zhong, Rui Bai, Miao Sun, Patrick Yin Chiang, "A review of ToF-based LiDAR", Journal of Semiconductors, vol.45, no.10, pp.101201, 2024.
2.
Luis Angel Mayoral Astorga, Masoud Shabaninezhad, Howard Northfield, Spyridon Ntais, Sabaa Rashid, Ewa Lisicka-Skrzek, Hamid Mehrvar, Eric Bernier, Dominic Goodwill, Lora Ramunno, Pierre Berini, "Electrically tunable plasmonic metasurface as a matrix of nanoantennas", Nanophotonics, vol.0, no.0, 2024.
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References

References is not available for this document.