多路复用
轨道角动量复用
角动量
叠加原理
物理
调制(音乐)
谐波
位置和动量空间
多路复用器
调幅
光学
声学
频率调制
电信
光的轨道角动量
无线电频率
计算机科学
经典力学
总角动量
电压
量子力学
作者
Yurou Jia,Yimin Liu,Bolun Hu,Wei Xiong,Yechao Bai,Ying Cheng,Da‐Jian Wu,Xiaojun Liu,Johan Christensen
标识
DOI:10.1002/adma.202202026
摘要
Multiplexing technology with increased information capacity plays a crucial role in the realm of acoustic communication. Different quantities of sound waves, including time, frequency, amplitude, phase, and orbital angular momentum (OAM), have been independently introduced as the physical multiplexing approach to allow for enhanced communication densities. An acoustic metasurface is decorated with carbon nanotube patches, which when electrically pumped and set to rotate, functions as a hybrid mode-frequency-division multiplexer with synthetic dimensions. Based on this spatiotemporal modulation, a superposition of vortex beams with orthogonal OAMs and symmetric harmonics are both numerically and experimentally demonstrated. Also, flexible combinations of OAM modes with diverse frequency shifts are obtained by transforming the azimuthal phase distributions, which inspires a mode-frequency-division multiplexing approach that significantly promotes the communication capacity.
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