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Recent Advances in Light Detection and Ranging: Optical Modulation Solutions and Novel Nanotechnologies

期刊

ADVANCED QUANTUM TECHNOLOGIES
卷 -, 期 -, 页码 -

出版社

WILEY
DOI: 10.1002/qute.202300157

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anti-interference; integrated device; light detection and ranging; nanotechnology; optical modulation

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This paper introduces the challenges of light detection and ranging sensors and the existing technologies to overcome these issues. It discusses the principles of laser rangefinders, optical modulation technologies, and the latest advancements in laser technology. The photonic crystal surface emitting laser stands out as a highly promising innovation. The paper also explores the progress in scanning stability and angles, as well as the recent advancements in metasurface technology.
Light detection and ranging (LiDAR) sensor is widely recognized as a critical component for accurate perception. However, there are a host of challenges that impede their performance, including low spatial resolution, high costs, large size, low reliability, and susceptibility to interference. It is challenging to overcome these issues using a single LiDAR module, necessitating the need for a review of current LiDAR technologies. The paper commences by introducing the fundamental principles of various laser rangefinders and discussing the optical modulation technologies used to prevent interference and ghost images. Next, the paper delves into the latest developments in laser technology, with a focus on enhancing the switching rate, compliance with eye safety regulations, miniaturization, and improving stability. One highly promising innovation is the photonic crystal surface emitting laser (PCSEL), a novel light source that boasts high-speed, small divergence angles, and high-power output. Finally, the paper discusses the advancements made in non-solid-state scanning and solid-state scanning, such as improving stability, increasing scanning angles, and optimizing the manufacturing of mechanical and micro-electromechanical systems (MEMS). Additionally, the paper highlights the recent advancements in nanotechnology, specifically metasurface technology, which offers superior capabilities such as beam deflection, enhanced field-of-view (FOV), and dynamic modulation. This paper tackles light detection and ranging challenges, delving into laser rangefinder principles, optical modulation, and advancements in laser tech. The promising photonic crystal surface emitting laser is a standout. Progress in scanning stability and angles is discussed as well, along with advancements in metasurface technology, enhancing beam deflection and field of view.image

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