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Microwave Photonic Integrated Circuits for Millimeter-Wave Wireless Communications

机译:毫米波无线通信的微波光子集成电路

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This paper describes the advantages that the introduction of photonic integration technologies can bring to the development of photonic-enabled wireless communications systems operating in the millimeter wave frequency range. We present two approaches for the development of dual wavelength sources for heterodyne-based millimeter wave generation realized using active/passive photonic integration technology. One approach integrates monolithically two distributed feedback semiconductor lasers along with semiconductor optical amplifiers, wavelength combiners, electro-optic modulators and broad bandwidth photodiodes. The other uses a generic photonic integration platform, developing narrow linewidth dual wavelength lasers based on arrayed waveguide gratings. Moreover, data transmission over a wireless link at a carrier wave frequency above 100 GHz is presented, in which the two lasers are free-running, and the modulation is directly applied to the single photonic chip without the requirement of any additional component.
机译:本文介绍了光子集成技术的引入可以带来在毫米波频率范围内运行的具有光子功能的无线通信系统的发展的优势。我们提出了两种方法开发双波长源,以利用主动/被动光子集成技术实现基于外差的毫米波生成。一种方法将两个分布式反馈半导体激光器与半导体光放大器,波长组合器,电光调制器和宽带光电二极管集成在一起。另一个使用通用的光子集成平台,基于阵列波导光栅开发窄线宽双波长激光器。此外,提出了通过无线链路以高于100 GHz的载波频率进行数据传输的方法,其中两个激光器是自由运行的,并且调制直接应用于单个光子芯片,而无需任何其他组件。 >

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