Litcius/Paper detail

A metasurface-based light-to-microwave transmitter for hybrid wireless communications

Xin Ge Zhang, Ya Lun Sun, Bingcheng Zhu, Wei Jiang, Qian Yu, Han Wei Tian, Cheng‐Wei Qiu, Zaichen Zhang, Tie Jun Cui

2022Light Science & Applications119 citationsDOIOpen Access PDF

Abstract

Signal conversion plays an important role in many applications such as communication, sensing, and imaging. Realizing signal conversion between optical and microwave frequencies is a crucial step to construct hybrid communication systems that combine both optical and microwave wireless technologies to achieve better features, which are highly desirable in the future wireless communications. However, such a signal conversion process typically requires a complicated relay to perform multiple operations, which will consume additional hardware/time/energy resources. Here, we report a light-to-microwave transmitter based on the time-varying and programmable metasurface integrated with a high-speed photoelectric detection circuit into a hybrid. Such a transmitter can convert a light intensity signal to two microwave binary frequency shift keying signals by using the dispersion characteristics of the metasurface to implement the frequency division multiplexing. To illustrate the metasurface-based transmitter, a hybrid wireless communication system that allows dual-channel data transmissions in a light-to-microwave link is demonstrated, and the experimental results show that two different videos can be transmitted and received simultaneously and independently. Our metasurface-enabled signal conversion solution may enrich the functionalities of metasurfaces, and could also stimulate new information-oriented applications.

Topics & Concepts

TransmitterComputer scienceWirelessMicrowaveSIGNAL (programming language)Electronic engineeringMultiplexingOptical communicationOptical wirelessMicrowave transmissionElectrical engineeringTelecommunicationsChannel (broadcasting)EngineeringProgramming languageMetamaterials and Metasurfaces ApplicationsAdvanced Wireless Communication TechnologiesOptical Wireless Communication Technologies