空间光调制器
光学
小型化
全息术
振幅
相位调制
回复反射器
极化(电化学)
调幅
材料科学
调制(音乐)
相(物质)
反射(计算机编程)
激光器
波前
计算机科学
光电子学
物理
频率调制
带宽(计算)
声学
纳米技术
电信
程序设计语言
化学
物理化学
量子力学
相位噪声
作者
Junghyun Park,Byung Gil Jeong,Sun Il Kim,Duhyun Lee,Jung-Woo Kim,Changgyun Shin,Chang Bum Lee,Tatsuhiro Otsuka,Jisoo Kyoung,Sangwook Kim,Ki‐Yeon Yang,Yong-Young Park,Jisan Lee,Inoh Hwang,Jaeduck Jang,Seok Ho Song,Mark L. Brongersma,Kyoungho Ha,Sungwoo Hwang,Hyuck Choo,Byoung Lyong Choi
标识
DOI:10.1038/s41565-020-00787-y
摘要
Spatial light modulators are essential optical elements in applications that require the ability to regulate the amplitude, phase and polarization of light, such as digital holography, optical communications and biomedical imaging. With the push towards miniaturization of optical components, static metasurfaces are used as competent alternatives. These evolved to active metasurfaces in which light-wavefront manipulation can be done in a time-dependent fashion. The active metasurfaces reported so far, however, still show incomplete phase modulation (below 360°). Here we present an all-solid-state, electrically tunable and reflective metasurface array that can generate a specific phase or a continuous sweep between 0 and 360° at an estimated rate of 5.4 MHz while independently adjusting the amplitude. The metasurface features 550 individually addressable nanoresonators in a 250 × 250 μm2 area with no micromechanical elements or liquid crystals. A key feature of our design is the presence of two independent control parameters (top and bottom gate voltages) in each nanoresonator, which are used to adjust the real and imaginary parts of the reflection coefficient independently. To demonstrate this array’s use in light detection and ranging, we performed a three-dimensional depth scan of an emulated street scene that consisted of a model car and a human figure up to a distance of 4.7 m. By controlling two voltage gates separately from one another, a spatial light modulator has been made that can continuously vary the phase of 360 degrees while independently adjusting the amplitude.
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