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Versatile Airy-Beam Generation Using a 1-Bit Coding Programmable Reflective Metasurface

delete2020-07-27
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PRE
AI
R
Rui Feng
B
Badreddine Ratni
衣建甲 (Jianjia Yi) *
张科 (Kuang Zhang)
丁旭旻 (Xumin Ding)
H
Hailin Zhang
A
A. de Lustrac
S
Shah Nawaz Burokur
DOI:10.1103/PhysRevApplied.14.014081delete
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Abstract

Abstract

En 中文
The Airy beam, known to present particular unique features, such as diffraction-free, self-healing, and self-bending, has attracted considerable interest in recent years. Here, an electronically controlled reflec-tive coding metasurface is exploited to generate and dynamically manipulate the Airy beam over a wide frequency band in the microwave regime. By judiciously controlling the external dc bias voltage applied to the programmable metasurface, two distinct control states, 0 and 1, are engineered as digital codes for -pi/2 and +pi/2 phase responses, respectively. The programmable binary-phase-coding metasurface enables the generation and active reshaping of the Airy beam to be numerically simulated and experimen-tally validated. Moreover, the metasurface allows the bandwidth limitation of passive counterparts to be overcome and is able to modulate electromagnetic waves over a broad frequency range, spanning from 9 to 12 GHz, to realize diffraction-free Airy beams.
Keywords:
VOLUMETRIC 2-PHOTON MICROSCOPY
GAUSSIAN LIGHT BULLETS
PHASE
LENS
DESIGN
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Physical Review Applied cover
Physical Review Applied
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