Fiber Amplifiers for Photonic Communication and Sensing

In this chapter, several types of fiber amplifier have been demonstrated and proposed, which could be used in communication and sensing, including Erbium doped fiber amplifier (EDFA), Raman fiber amplifier (RFA), hybrid fiber amplifier (EDFA+ RFA) and high power fiber amplifier. The authors also use...

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Published inGreen Photonics and Smart Photonics pp. 97 - 114
Main Authors Yu, Yi-Lin, Liaw, Shien-Kuei, Chen, Jingo
Format Book Chapter
LanguageEnglish
Published Denmark Routledge 2016
River Publishers
Edition1
Subjects
Online AccessGet full text
ISBN8793379277
9788793379275
DOI10.1201/9781003338338-7

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Abstract In this chapter, several types of fiber amplifier have been demonstrated and proposed, which could be used in communication and sensing, including Erbium doped fiber amplifier (EDFA), Raman fiber amplifier (RFA), hybrid fiber amplifier (EDFA+ RFA) and high power fiber amplifier. The authors also used the concept of residual pumping reused to optimize the gain efficiency of C + L band signals. This chapter proposes four kinds of fiber amplifier, EDFA, Raman fiber amplifier, hybrid fiber amplifier, and high-power fiber amplifier. It proposes a bidirectional EDFA and a bidirectional hybrid fiber amplifier. The chapter employs the concept of residual pumping power reuse to optimize the gain efficiency of C + L band signals. It proposes a new architecture of RFA based on signal and pump double-pass the gain medium and cascaded FBGs to increase the pumping efficiency. In a RFA-based WDM system, it is difficult to use only one segment of DCF for compensating WDM channels in the whole C and/or L-band. It is attributed to the mismatch of dispersion slope of the DCF and the standard fiber, that is, SMF. The chapter uses Er/Yb codoped fiber as the gain medium of high power fiber amplifier.
AbstractList In this chapter, several types of fiber amplifier have been demonstrated and proposed, which could be used in communication and sensing, including Erbium doped fiber amplifier (EDFA), Raman fiber amplifier (RFA), hybrid fiber amplifier (EDFA+ RFA) and high power fiber amplifier. The authors also used the concept of residual pumping reused to optimize the gain efficiency of C + L band signals. This chapter proposes four kinds of fiber amplifier, EDFA, Raman fiber amplifier, hybrid fiber amplifier, and high-power fiber amplifier. It proposes a bidirectional EDFA and a bidirectional hybrid fiber amplifier. The chapter employs the concept of residual pumping power reuse to optimize the gain efficiency of C + L band signals. It proposes a new architecture of RFA based on signal and pump double-pass the gain medium and cascaded FBGs to increase the pumping efficiency. In a RFA-based WDM system, it is difficult to use only one segment of DCF for compensating WDM channels in the whole C and/or L-band. It is attributed to the mismatch of dispersion slope of the DCF and the standard fiber, that is, SMF. The chapter uses Er/Yb codoped fiber as the gain medium of high power fiber amplifier.
Author Liaw, Shien-Kuei
Yu, Yi-Lin
Chen, Jingo
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Lin, Gong-Ru
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Keywords Raman Coupler
Fiber Amplifier
Pump Power
Broyden Method
Gain Medium
Input Signal Wavelength
RFA
PBC
Dispersion Slope
PDG
WDM Coupler
EYDF
NRZ
Broad Band Light Source
DFB Laser
WDM Channel
EDFA Gain
SOA
DCF
WDM System
SMF
Dispersion Compensation
Residual Dispersion
Tunable Laser Sources
WDM Signal
EDFA
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Language English
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Title Fiber Amplifiers for Photonic Communication and Sensing
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