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Titlebook: Advanced Optical and Optoelectronic Fibers; Lei Wei Book 2024 The Editor(s) (if applicable) and The Author(s), under exclusive license to

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https://doi.org/10.1007/978-3-658-27054-4c principle and sensing mechanism of the MZIs for the measurement of these measurands are presented and discussed. In addition, recent progress of in-fiber MZIs for these sensing applications is reviewed. Specifically, the means to enhance the sensitivities are summarized and discussed. The chapter
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Module dynamischer Organisationsgestaltunging processes. Novel designs to integrate magneto-active material and commercial microchips within the silica and polymer fibers, showcase potential advancements in distributed sensing. The chapter presents notable studies, demonstrating diverse applications such as high-sensitivity magnetic field i
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https://doi.org/10.1007/978-3-658-27054-4 integrated within polymer optical fibres. Afterwards, we will introduce the most commonly used polymers in neuroscience applications and describe all the steps required to fabricate optoelectronic and optofluidic fibres by thermal drawing process which is the most common technique for optical fibre
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Einflußgroßen der Organisationsstrukturle preparation. According to the different interactions between fiber materials and X-ray photons, detection mechanisms of fiber detectors could be classified into indirect and direct type. And the preparation methods of fiber detectors are relatively simple with the participation of fiber optical o
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Motivation von Entscheidungseinheiten To provide a more comprehensive perspective, this chapter will not only examine wearable sensors based on optical fiber but also explore electrical-based fiber sensors and summarize the current applications of machine learning, a rapidly growing field, in fiber sensors.
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Specialty Fiber Technology for Brillouin Optical Time Domain Analysis,pplications, such as curvature sensing and shape reconstruction, discriminative sensing of temperature and strain. Multiplexed sensing systems have been developed to realize multipurpose sensing capabilities, such as hybrid Brillouin and Rayleigh sensing system, hybrid Brillouin and Raman sensing sy
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Beyond the Spectrum: Specialty Optical Fibers in Magnetic Field Sensing,ing processes. Novel designs to integrate magneto-active material and commercial microchips within the silica and polymer fibers, showcase potential advancements in distributed sensing. The chapter presents notable studies, demonstrating diverse applications such as high-sensitivity magnetic field i
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