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Recent Advances in Integrated Photonic Sensors

机译:集成光子传感器的最新进展

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摘要

Nowadays, optical devices and circuits are becoming fundamental components in several application fields such as medicine, biotechnology, automotive, aerospace, food quality control, chemistry, to name a few. In this context, we propose a complete review on integrated photonic sensors, with specific attention to materials, technologies, architectures and optical sensing principles. To this aim, sensing principles commonly used in optical detection are presented, focusing on sensor performance features such as sensitivity, selectivity and rangeability. Since photonic sensors provide substantial benefits regarding compatibility with CMOS technology and integration on chips characterized by micrometric footprints, design and optimization strategies of photonic devices are widely discussed for sensing applications. In addition, several numerical methods employed in photonic circuits and devices, simulations and design are presented, focusing on their advantages and drawbacks. Finally, recent developments in the field of photonic sensing are reviewed, considering advanced photonic sensor architectures based on linear and non-linear optical effects and to be employed in chemical/biochemical sensing, angular velocity and electric field detection.
机译:如今,光学器件和电路已成为医学,生物技术,汽车,航空航天,食品质量控制,化学等多个应用领域中的基本组件。在这种情况下,我们建议对集成光子传感器进行全面审查,尤其要注意材料,技术,体系结构和光学传感原理。为此,提出了光学检测中常用的传感原理,重点是传感器的性能特征,例如灵敏度,选择性和可测范围。由于光子传感器在与CMOS技术的兼容性以及以微米级尺寸为特征的芯片上集成方面提供了实质性的好处,因此针对传感应用广泛讨论了光子器件的设计和优化策略。此外,重点介绍了光子电路和器件,仿真和设计中使用的几种数值方法。最后,回顾了光子传感领域的最新进展,考虑了基于线性和非线性光学效应的先进光子传感器架构,并将其用于化学/生化传感,角速度和电场检测。

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