Produktbild: Polarization Measurement and Control in Optical Fiber Communication and Sensor Systems

Polarization Measurement and Control in Optical Fiber Communication and Sensor Systems

Aus der Reihe IEEE Press

161,99 €

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

27.10.2022

Verlag

John Wiley & Sons

Seitenzahl

560

Maße (L/B/H)

26/18,3/3,5 cm

Gewicht

1241 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-75847-1

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

27.10.2022

Verlag

John Wiley & Sons

Seitenzahl

560

Maße (L/B/H)

26/18,3/3,5 cm

Gewicht

1241 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-75847-1

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: Polarization Measurement and Control in Optical Fiber Communication and Sensor Systems
  • Chapter 1 History of Light and Polarization 2
     
    1.1 Early history of light 2
     
    1.2 History of polarization 4
     
    1.3 History of polarization in optical fibers and waveguides 8
     
    1.3.1 The history of optical fiber 8
     
    1.3.2 History of polarization in optical fibers 11
     
    1.3.3 Chronicles of polarization optics in optical fibers from 1959 to 1981 15
     
    Reference 17
     
    Bibliography 18
     
    Chapter 2 Polarization Basics 19
     
    2.1 Introduction to Polarization 19
     
    2.2 The degenerate polarization states of light 20
     
    2.3 The polarization ellipse of light 23
     
    2.4 Poincaré Sphere presentation of polarization 27
     
    2.5 Degree of polarization (DOP) 29
     
    2.6 Birefringence 32
     
    2.7 Photoelasticity or photo-elastic effect 34
     
    2.8 Dichroism, diattenuation, and polarization dependent loss 34
     
    2.9 Polarization properties of reflected and refracted light 35
     
    Appendix 2A 36
     
    Bibliography 37
     
    Chapter 3 Polarization effects unique to optical fiber systems 39
     
    3.1 Polarization variation in optical fibers 39
     
    3.2 Polarization eigenmodes in a single mode optical fiber 40
     
    3.3 Birefringence contributions in optical fibers 42
     
    3.3.1 Noncircular Core 42
     
    3.3.2 Internal lateral stress 44
     
    3.3.3 External lateral stress 46
     
    3.3.4 Fiber Bending 47
     
    3.3.5 Fiber Twist 48
     
    3.3.6 Electrical and Magnetic Fields 50
     
    3.4 Polarization impairments in optical fiber systems 51
     
    3.5 Polarization multiplexing 59
     
    3.6 Polarization issues unique to optic fiber sensing system 60
     
    3.7 Polarization issues unique to microwave photonics systems 61
     
    References 62
     
    Chapter 4 Mathematics for polarization analysis 66
     
    4.1 Jones vector representation of monochramtic light 66
     
    4.1.1 Jones vector 66
     
    4.1.2 Mutual orthogonality of Jones vectors 69
     
    4.1.3 Linear independence of Jones vectors 70
     
    4.2 Jones matrix of optical devices 71
     
    4.2.1 Jones Matrix of optical elements 72
     
    4.2.2 Jones matrix of reflection 78
     
    4.2.3 Polarization compensation of reflection 83
     
    4.2.4 Polarization properties of corner-cube retroreflector 85
     
    4.3 Jones matrix of multi-element optical systems 86
     
    4.3.1 Jones equivalent theorems 86
     
    4.3.2 Properties of the optical system containing only retarders and rotators 87
     
    4.3.3 Eigenvector and eigenvalue of an optical system 90
     
    4.3.3 Transmission properties of an optical system including partial polarizers 93
     
    4.3.5 Experimental measurement of Jones matrix 97
     
    4.4.6 Jones calculus in retracing optical path 99
     
    4.3.7 N-matrix and polarization evolution 105
     
    4.3.8 Jones matrix of twisted optical fiber 112
     
    4.4 Mueller matrix representation of optical devices 117
     
    4.4.1 Definition of Mueller matrix 117
     
    4.4.2 Mueller matrix of optical elements 120
     
    4.5 Polarization evolution in optical fiber 125
     
    4.5.1 Rotation matrix representation of unitary optical systems 125
     
    4.5.2 Infinitesimal rotation and rotation vector in optical fiber 128
     
    4.5.3 Birefringence vector and polarization evolution along an optical fiber 132
     
    4.5.4 PMD vector and polarization evolution with optical frequency 138
     
    4.6 PMD measurement 143
     
    4.6.1 Poincare sphere analysis 144
     
    4.6.2 Mueller matrix method 147
     
    4.6.4 Jones Matrix Eigenanalysis 149
     
    4.7 Polarization properties of quasi-monochromatic Light 151
     
    4.7.1 Coherenc