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Monolithically integrated multi-section semiconductor lasers: towards the future of integrated microwave photonics

机译:单片集成的多部分半导体激光器:朝向集成微波光子的未来

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Recent advances in monolithically integrated multi-section semiconductor lasers (MI-MSSLs) have propelled microwave photonic technologies to new potentials with a compact, reliable, and green implementation. Much research has examined that MI-MSSLs can realize the same or even better microwave photonic functions compared to discrete lasers by taking advantages of enhanced light-matter interactions. They are beneficial towards the future of integrated microwave photonics (IMWP) once integrating the other optical components such as modulators, amplifiers, transmission waveguide and so on. Herein, these recent advances in this emerging field are reviewed and discussed. Three main kinds of MI-MSSL structures are demonstrated including passive feedback laser, active feedback laser, as well as monolithically integrated mutually injected semiconductor laser. Their pros and cons are distinguished and compared through analyzing the desired characteristic indicators in modern MWP subsystems. The focus of this paper is on the photonic microwave techniques based on the nonlinear dynamics of MI-MSSLs, consisting of electro-optic conversion characteristics enhancement, photonic microwave generation, microwave photonic filter, as well as multi-wavelength laser array for wavelength division multiplexing radio-over-fiber (WDM-RoF) networks. We also take a look at the future prospective at the research directions and challenges in this area.
机译:在单片集成的多节半导体激光器(MI-MSSLs)的最新进展,推动微波光子技术,以新的潜力具有结构紧凑,可靠,绿色的落实。许多研究考察了MI-MSSLs可以实现同样的甚至更好的微波光子功能相比,通过采用增强的光与物质相互作用的优点离散激光器。它们是朝集成微波光子(IMWP)一旦整合其它光学部件,如调制器,放大器,传输波导等等将来有益的。在这里,这些最近在这一新兴领域的进展进行审查和讨论。三种主要的MI-MSSL结构被证明,包括被动反馈激光器,主动反馈激光器,以及单片集成相互注入半导体激光器。他们的优点和缺点进行区分,并通过比较现代MWP子系统分析所需的特性指标。本文的重点是基于MI-MSSLs的非线性动力学光子微波技术,包括电光转换特性的增强,光子微波产生,微波光子滤波器,以及多波长激光器阵列的波分复用无线电过纤维(WDM-的RoF)网络。我们也来看看未来的研究方向和挑战,在这方面的预期。

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