Fiber-Optic Measurement Techniques:
Intro -- Fiber-Optic Measurement Techniques -- Copyright -- Contents -- Preface to first edition -- Preface to the second edition -- Chapter 1: Fundamentals of optical devices -- 1.1. Introduction -- 1.2. Laser diodes and LEDs -- 1.2.1. Pn junction and energy diagram -- 1.2.2. Direct and indirect se...
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
London
Academic Press
[2023]
Lodon Elsevier |
Ausgabe: | Second edition |
Schlagworte: | |
Online-Zugang: | UER01 |
Zusammenfassung: | Intro -- Fiber-Optic Measurement Techniques -- Copyright -- Contents -- Preface to first edition -- Preface to the second edition -- Chapter 1: Fundamentals of optical devices -- 1.1. Introduction -- 1.2. Laser diodes and LEDs -- 1.2.1. Pn junction and energy diagram -- 1.2.2. Direct and indirect semiconductors -- 1.2.3. Carrier confinement -- 1.2.4. Spontaneous emission and stimulated emission -- 1.2.5. Light-emitting diodes (LEDs) -- 1.2.5.1. PI curve -- 1.2.5.2. Modulation dynamics -- 1.2.6. Laser diodes (LDs) -- 1.2.6.1. Rate equations -- 1.2.6.2. Steady state solutions of rate equations -- 1.2.6.3. Threshold carrier density -- Threshold current density -- PJ relationship about threshold -- Side-mode suppression ratio (SMR) -- Turn-on delay -- Small-signal modulation response -- Laser noises -- Relative intensity noise (RIN) -- Phase noise -- Mode partition noise -- 1.2.7. Single-frequency semiconductor lasers -- 1.2.7.1. DFB laser diode -- 1.2.7.2. External cavity laser diode -- 1.2.7.3. Integrated tunable lasers -- 1.3. Photodetectors -- 1.3.1. Pn-junction photodiodes -- 1.3.2. Responsivity and bandwidth -- 1.3.3. Electrical characteristics of a photodiode -- 1.3.4. Photodetector noise and SNR -- 1.3.4.1. Noise-equivalent power (NEP) -- 1.3.5. Avalanche photodiodes (APDs) -- 1.3.6. APD used as single photon detectors -- 1.4. Optical fibers -- 1.4.1. Reflection and refraction -- 1.4.1.1. Fresnel reflection coefficients -- 1.4.1.2. Special cases -- Normal incidence -- Critical angle -- 1.4.1.3. Optical field phase shift between the incident and the reflected beams -- 1.4.1.4. Brewster angle (total transmission ρ=0) -- 1.4.2. Propagation modes in optical fibers -- 1.4.2.1. Geometric optics analysis -- 1.4.2.2. Mode analysis using electromagnetic field theory -- 1.4.2.3. Numerical aperture -- 1.4.3. Optical fiber attenuation. |
Beschreibung: | 1 online resource (846 pages) |
ISBN: | 9780323915533 |
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520 | 3 | |a Intro -- Fiber-Optic Measurement Techniques -- Copyright -- Contents -- Preface to first edition -- Preface to the second edition -- Chapter 1: Fundamentals of optical devices -- 1.1. Introduction -- 1.2. Laser diodes and LEDs -- 1.2.1. Pn junction and energy diagram -- 1.2.2. Direct and indirect semiconductors -- 1.2.3. Carrier confinement -- 1.2.4. Spontaneous emission and stimulated emission -- 1.2.5. Light-emitting diodes (LEDs) -- 1.2.5.1. PI curve -- 1.2.5.2. Modulation dynamics -- 1.2.6. Laser diodes (LDs) -- 1.2.6.1. Rate equations -- 1.2.6.2. Steady state solutions of rate equations -- 1.2.6.3. Threshold carrier density -- Threshold current density -- PJ relationship about threshold -- Side-mode suppression ratio (SMR) -- Turn-on delay -- Small-signal modulation response -- Laser noises -- Relative intensity noise (RIN) -- Phase noise -- Mode partition noise -- 1.2.7. Single-frequency semiconductor lasers -- 1.2.7.1. DFB laser diode -- 1.2.7.2. External cavity laser diode -- 1.2.7.3. Integrated tunable lasers -- 1.3. Photodetectors -- 1.3.1. Pn-junction photodiodes -- 1.3.2. Responsivity and bandwidth -- 1.3.3. Electrical characteristics of a photodiode -- 1.3.4. Photodetector noise and SNR -- 1.3.4.1. Noise-equivalent power (NEP) -- 1.3.5. Avalanche photodiodes (APDs) -- 1.3.6. APD used as single photon detectors -- 1.4. Optical fibers -- 1.4.1. Reflection and refraction -- 1.4.1.1. Fresnel reflection coefficients -- 1.4.1.2. Special cases -- Normal incidence -- Critical angle -- 1.4.1.3. Optical field phase shift between the incident and the reflected beams -- 1.4.1.4. Brewster angle (total transmission ρ=0) -- 1.4.2. Propagation modes in optical fibers -- 1.4.2.1. Geometric optics analysis -- 1.4.2.2. Mode analysis using electromagnetic field theory -- 1.4.2.3. Numerical aperture -- 1.4.3. Optical fiber attenuation. | |
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author_facet | Hui, Rongqing OSullivan, Maurice S. 1956- |
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dewey-ones | 621 - Applied physics |
dewey-raw | 621.3692 |
dewey-search | 621.3692 |
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discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | Second edition |
format | Electronic eBook |
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id | DE-604.BV048569411 |
illustrated | Not Illustrated |
index_date | 2024-07-03T21:01:43Z |
indexdate | 2024-07-10T09:41:40Z |
institution | BVB |
isbn | 9780323915533 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033945482 |
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physical | 1 online resource (846 pages) |
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spelling | Hui, Rongqing Verfasser (DE-588)140532544 aut Fiber-Optic Measurement Techniques Rongqing Hui, Maurice O'Sullivan Second edition London Academic Press [2023] Lodon Elsevier 1 online resource (846 pages) txt rdacontent c rdamedia cr rdacarrier Intro -- Fiber-Optic Measurement Techniques -- Copyright -- Contents -- Preface to first edition -- Preface to the second edition -- Chapter 1: Fundamentals of optical devices -- 1.1. Introduction -- 1.2. Laser diodes and LEDs -- 1.2.1. Pn junction and energy diagram -- 1.2.2. Direct and indirect semiconductors -- 1.2.3. Carrier confinement -- 1.2.4. Spontaneous emission and stimulated emission -- 1.2.5. Light-emitting diodes (LEDs) -- 1.2.5.1. PI curve -- 1.2.5.2. Modulation dynamics -- 1.2.6. Laser diodes (LDs) -- 1.2.6.1. Rate equations -- 1.2.6.2. Steady state solutions of rate equations -- 1.2.6.3. Threshold carrier density -- Threshold current density -- PJ relationship about threshold -- Side-mode suppression ratio (SMR) -- Turn-on delay -- Small-signal modulation response -- Laser noises -- Relative intensity noise (RIN) -- Phase noise -- Mode partition noise -- 1.2.7. Single-frequency semiconductor lasers -- 1.2.7.1. DFB laser diode -- 1.2.7.2. External cavity laser diode -- 1.2.7.3. Integrated tunable lasers -- 1.3. Photodetectors -- 1.3.1. Pn-junction photodiodes -- 1.3.2. Responsivity and bandwidth -- 1.3.3. Electrical characteristics of a photodiode -- 1.3.4. Photodetector noise and SNR -- 1.3.4.1. Noise-equivalent power (NEP) -- 1.3.5. Avalanche photodiodes (APDs) -- 1.3.6. APD used as single photon detectors -- 1.4. Optical fibers -- 1.4.1. Reflection and refraction -- 1.4.1.1. Fresnel reflection coefficients -- 1.4.1.2. Special cases -- Normal incidence -- Critical angle -- 1.4.1.3. Optical field phase shift between the incident and the reflected beams -- 1.4.1.4. Brewster angle (total transmission ρ=0) -- 1.4.2. Propagation modes in optical fibers -- 1.4.2.1. Geometric optics analysis -- 1.4.2.2. Mode analysis using electromagnetic field theory -- 1.4.2.3. Numerical aperture -- 1.4.3. Optical fiber attenuation. Electronic books OSullivan, Maurice S. 1956- (DE-588)140532560 edt Erscheint auch als 978-0-323-90957-0 Druck-Ausgabe |
spellingShingle | Hui, Rongqing Fiber-Optic Measurement Techniques |
title | Fiber-Optic Measurement Techniques |
title_auth | Fiber-Optic Measurement Techniques |
title_exact_search | Fiber-Optic Measurement Techniques |
title_exact_search_txtP | Fiber-Optic Measurement Techniques |
title_full | Fiber-Optic Measurement Techniques Rongqing Hui, Maurice O'Sullivan |
title_fullStr | Fiber-Optic Measurement Techniques Rongqing Hui, Maurice O'Sullivan |
title_full_unstemmed | Fiber-Optic Measurement Techniques Rongqing Hui, Maurice O'Sullivan |
title_short | Fiber-Optic Measurement Techniques |
title_sort | fiber optic measurement techniques |
work_keys_str_mv | AT huirongqing fiberopticmeasurementtechniques AT osullivanmaurices fiberopticmeasurementtechniques |