Description

Book Synopsis

The authors deliver a complete overview of fiber-optic Fabry-Perot (FFP) sensing technology, integrating the knowledge and tools of multiple fields including optics, sensing, micromachining, instrumentation, physics, and materials science. The main chapters discuss operating principles, microstructures, fabrication methods, signal demodulation, and instrumentation. This treatment spans the full range of structures (intrinsic/extrinsic, multimode fiber vs single-mode fibers), as well as advanced micromachining technologies and major interrogating and multiplexing methods for the formation of multi-point, quasi-distributed sensing networks. Readers will also gain a summary of state-of-the-art applications in oil, gas, and electricity industries, aerospace technology, and biomedicine.

Yun-Jiang Rao is Dean of the School of Communication & Information Engineering, and Director of the Key Lab of Optical Fiber Sensing & Communications at the University of Electronic Science and Tech

Trade Review

"This book strikes a good balance between fundamental materials science and technology developments with diverse topics ranging from epitaxial growth of high-aluminum and high-indium composition III-nitride thin-film and nanostructural materials to development of native GaN substrates, from fundamental understandings of electronic and optical properties to processing techniques which are of central important to improve device performance, and from continued push to new emitter wavelengths to new frontiers in solar cells, intersubband (ISB) optoelectronics, lighting communications, and quantum light emitters…. I believe this book will be a great resource to researchers and engineers, both in academia and industry, to learn and be inspired by the latest developments and potentials of III-nitride materials and devices."
—Shuji Nakamura, 2014 Nobel Laureate in Physics and Professor of Materials, University of California Santa Barbara



Table of Contents

Contents

Series Preface

Preface

Authors

Chapter 1 Principles

Chapter 2 Microstructures of FFPI Sensors

Chapter 3 Fabrication Techniques for FFPI Sensors

Chapter 4 Physical and Biochemical Sensors Based on FFPIs

Chapter 5 Interrogation and Multiplexing Techniques for FFP Sensors

Chapter 6 Applications

Index

FiberOptic FabryPerot Sensors

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    £147.25

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    RRP £155.00 – you save £7.75 (5%)

    Order before 4pm today for delivery by Fri 31 Jul 2026.

    A Hardback by Yun-Jiang Rao, Zeng-Ling Ran, Yuan Gong

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      Publisher: Taylor & Francis Inc
      Publication Date: Publication Date: 26/04/2017
      ISBN13: 9781498736930, 978-1498736930
      ISBN10: 1498736939

      Description

      Book Synopsis

      The authors deliver a complete overview of fiber-optic Fabry-Perot (FFP) sensing technology, integrating the knowledge and tools of multiple fields including optics, sensing, micromachining, instrumentation, physics, and materials science. The main chapters discuss operating principles, microstructures, fabrication methods, signal demodulation, and instrumentation. This treatment spans the full range of structures (intrinsic/extrinsic, multimode fiber vs single-mode fibers), as well as advanced micromachining technologies and major interrogating and multiplexing methods for the formation of multi-point, quasi-distributed sensing networks. Readers will also gain a summary of state-of-the-art applications in oil, gas, and electricity industries, aerospace technology, and biomedicine.

      Yun-Jiang Rao is Dean of the School of Communication & Information Engineering, and Director of the Key Lab of Optical Fiber Sensing & Communications at the University of Electronic Science and Tech

      Trade Review

      "This book strikes a good balance between fundamental materials science and technology developments with diverse topics ranging from epitaxial growth of high-aluminum and high-indium composition III-nitride thin-film and nanostructural materials to development of native GaN substrates, from fundamental understandings of electronic and optical properties to processing techniques which are of central important to improve device performance, and from continued push to new emitter wavelengths to new frontiers in solar cells, intersubband (ISB) optoelectronics, lighting communications, and quantum light emitters…. I believe this book will be a great resource to researchers and engineers, both in academia and industry, to learn and be inspired by the latest developments and potentials of III-nitride materials and devices."
      —Shuji Nakamura, 2014 Nobel Laureate in Physics and Professor of Materials, University of California Santa Barbara



      Table of Contents

      Contents

      Series Preface

      Preface

      Authors

      Chapter 1 Principles

      Chapter 2 Microstructures of FFPI Sensors

      Chapter 3 Fabrication Techniques for FFPI Sensors

      Chapter 4 Physical and Biochemical Sensors Based on FFPIs

      Chapter 5 Interrogation and Multiplexing Techniques for FFP Sensors

      Chapter 6 Applications

      Index

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