Generation of harmonic oscillations in ring resonator with high Q-factor

S.A. Kolpakov*, H. Kbashi, Yu. Loika, S.V. Sergeyev

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

We report on generation of harmonic oscillations with frequencies of hundreds of MHz and radio-frequency linewidth of 13 Hz in unidirectional ring laser oscillator. This high stability makes these oscillators a suitable substitute for existing quartz resonators used in high frequency optoelectronics applications.

Original languageEnglish
Title of host publicationProceedings : 2016 International Conference Laser Optic
PublisherIEEE
PagesR1-30
Number of pages1
ISBN (Print)978-1-4673-9735-3
DOIs
Publication statusPublished - 23 Aug 2016
Event2016 International Conference Laser Optics - St. Petersburg, Russian Federation
Duration: 27 Jun 20161 Jul 2016

Conference

Conference2016 International Conference Laser Optics
Abbreviated titleLO 2016
CountryRussian Federation
CitySt. Petersburg
Period27/06/161/07/16

Fingerprint

harmonic oscillation
Quartz
Ring lasers
Linewidth
Optoelectronic devices
Q factors
Resonators
resonators
oscillators
rings
ring lasers
radio frequencies
quartz
substitutes

Bibliographical note

-

Keywords

  • fiber lasers
  • optical harmonic generation
  • optical resonators
  • ring lasers

Cite this

Kolpakov, S. A., Kbashi, H., Loika, Y., & Sergeyev, S. V. (2016). Generation of harmonic oscillations in ring resonator with high Q-factor. In Proceedings : 2016 International Conference Laser Optic (pp. R1-30). IEEE. https://doi.org/10.1109/LO.2016.7549650
Kolpakov, S.A. ; Kbashi, H. ; Loika, Yu. ; Sergeyev, S.V. / Generation of harmonic oscillations in ring resonator with high Q-factor. Proceedings : 2016 International Conference Laser Optic. IEEE, 2016. pp. R1-30
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title = "Generation of harmonic oscillations in ring resonator with high Q-factor",
abstract = "We report on generation of harmonic oscillations with frequencies of hundreds of MHz and radio-frequency linewidth of 13 Hz in unidirectional ring laser oscillator. This high stability makes these oscillators a suitable substitute for existing quartz resonators used in high frequency optoelectronics applications.",
keywords = "fiber lasers, optical harmonic generation, optical resonators, ring lasers",
author = "S.A. Kolpakov and H. Kbashi and Yu. Loika and S.V. Sergeyev",
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month = "8",
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Kolpakov, SA, Kbashi, H, Loika, Y & Sergeyev, SV 2016, Generation of harmonic oscillations in ring resonator with high Q-factor. in Proceedings : 2016 International Conference Laser Optic. IEEE, pp. R1-30, 2016 International Conference Laser Optics, St. Petersburg, Russian Federation, 27/06/16. https://doi.org/10.1109/LO.2016.7549650

Generation of harmonic oscillations in ring resonator with high Q-factor. / Kolpakov, S.A.; Kbashi, H.; Loika, Yu.; Sergeyev, S.V.

Proceedings : 2016 International Conference Laser Optic. IEEE, 2016. p. R1-30.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

TY - GEN

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AU - Kolpakov, S.A.

AU - Kbashi, H.

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N2 - We report on generation of harmonic oscillations with frequencies of hundreds of MHz and radio-frequency linewidth of 13 Hz in unidirectional ring laser oscillator. This high stability makes these oscillators a suitable substitute for existing quartz resonators used in high frequency optoelectronics applications.

AB - We report on generation of harmonic oscillations with frequencies of hundreds of MHz and radio-frequency linewidth of 13 Hz in unidirectional ring laser oscillator. This high stability makes these oscillators a suitable substitute for existing quartz resonators used in high frequency optoelectronics applications.

KW - fiber lasers

KW - optical harmonic generation

KW - optical resonators

KW - ring lasers

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Kolpakov SA, Kbashi H, Loika Y, Sergeyev SV. Generation of harmonic oscillations in ring resonator with high Q-factor. In Proceedings : 2016 International Conference Laser Optic. IEEE. 2016. p. R1-30 https://doi.org/10.1109/LO.2016.7549650