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Hybrid Brillouin/thulium multiwavelength fiber laser with switchable single- and double-Brillouin-frequency spacing.

Identifieur interne : 000114 ( PubMed/Corpus ); précédent : 000113; suivant : 000115

Hybrid Brillouin/thulium multiwavelength fiber laser with switchable single- and double-Brillouin-frequency spacing.

Auteurs : Kai Hu ; Irina V. Kabakova ; Simon Lefrancois ; Darren D. Hudson ; Sailing He ; Benjamin J. Eggleton

Source :

RBID : pubmed:25607156

English descriptors

Abstract

We demonstrate a multiwavelength laser at 2 µm based on a hybrid gain scheme consisting of a Brillouin gain medium and a thulium-doped fiber. The laser has switchable frequency spacing, corresponding to the single and double Brillouin frequency shifts. In the 20 dB bandwidth, seven lasing channels with a frequency spacing of 0.1 nm (7.62 GHz) and eleven channels with a double-spacing of 0.2 nm (15.24 GHz) are obtained. A wavelength tunability of 1.3 nm is realized for both laser configurations by shifting the pump wavelength. Strong four wave mixing is observed in the double-spacing laser resulting in an improved performance: larger number of channels and better temporal stability.

PubMed: 25607156

Links to Exploration step

pubmed:25607156

Le document en format XML

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<name sortKey="Kabakova, Irina V" sort="Kabakova, Irina V" uniqKey="Kabakova I" first="Irina V" last="Kabakova">Irina V. Kabakova</name>
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<name sortKey="Hudson, Darren D" sort="Hudson, Darren D" uniqKey="Hudson D" first="Darren D" last="Hudson">Darren D. Hudson</name>
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<div type="abstract" xml:lang="en">We demonstrate a multiwavelength laser at 2 µm based on a hybrid gain scheme consisting of a Brillouin gain medium and a thulium-doped fiber. The laser has switchable frequency spacing, corresponding to the single and double Brillouin frequency shifts. In the 20 dB bandwidth, seven lasing channels with a frequency spacing of 0.1 nm (7.62 GHz) and eleven channels with a double-spacing of 0.2 nm (15.24 GHz) are obtained. A wavelength tunability of 1.3 nm is realized for both laser configurations by shifting the pump wavelength. Strong four wave mixing is observed in the double-spacing laser resulting in an improved performance: larger number of channels and better temporal stability.</div>
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