Injection Locking of Optoelectronic Oscillators With Large Delay

The optoelectronic oscillator is a delay line oscillator that leverages optical fibre technology to realize the large delay required for low phase noise systems. Spurious sidemodes are an artefact of the delay line oscillator, yet treatments of injection locking of optoelectronic oscillators have re...

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Published inJournal of lightwave technology Vol. 40; no. 9; pp. 2754 - 2762
Main Authors Hasan, Mehedi, Banerjee, Abhijit, Hall, Trevor James
Format Journal Article
LanguageEnglish
Published New York IEEE 01.05.2022
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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ISSN0733-8724
1558-2213
DOI10.1109/JLT.2022.3148480

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Abstract The optoelectronic oscillator is a delay line oscillator that leverages optical fibre technology to realize the large delay required for low phase noise systems. Spurious sidemodes are an artefact of the delay line oscillator, yet treatments of injection locking of optoelectronic oscillators have relied on the application of classical injection locking theory valid only for single mode oscillators. The large delay contributed by the optical fibre delay line is accounted for by the classical theory only in part through the quality factor Q that captures the round-trip group delay in a neighborhood of the oscillation frequency. This paper presents a new formulation of time delay oscillators subject to injection that describes all the essential features of their dynamics and phase noise. The common assumptions of a single mode oscillator and weak injection are removed. This is important to correctly predict the lock-in range, the suppression of sidemodes and the phase noise spectrum. The findings of the analysis are validated by experimental measurements provided by an optoelectronic oscillator under injection by an external source.
AbstractList The optoelectronic oscillator is a delay line oscillator that leverages optical fibre technology to realize the large delay required for low phase noise systems. Spurious sidemodes are an artefact of the delay line oscillator, yet treatments of injection locking of optoelectronic oscillators have relied on the application of classical injection locking theory valid only for single mode oscillators. The large delay contributed by the optical fibre delay line is accounted for by the classical theory only in part through the quality factor Q that captures the round-trip group delay in a neighborhood of the oscillation frequency. This paper presents a new formulation of time delay oscillators subject to injection that describes all the essential features of their dynamics and phase noise. The common assumptions of a single mode oscillator and weak injection are removed. This is important to correctly predict the lock-in range, the suppression of sidemodes and the phase noise spectrum. The findings of the analysis are validated by experimental measurements provided by an optoelectronic oscillator under injection by an external source.
Author Hasan, Mehedi
Banerjee, Abhijit
Hall, Trevor James
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SubjectTerms And phase noise spectrum
Band-pass filters
Delay lines
Delays
Fiber technology
Frequency locking
Group delay
injection locking
lock-in range
Noise
Optical fiber amplifiers
Optical fibers
Optical resonators
Optoelectronics
Oscillators
Phase noise
Radio frequency
time delay oscillator
Time lag
Title Injection Locking of Optoelectronic Oscillators With Large Delay
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