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Double-Wall Carbon Nanotubes for Wide-Band, Ultrafast Pulse Generation

Identifieur interne : 000018 ( Hal/Corpus ); précédent : 000017; suivant : 000019

Double-Wall Carbon Nanotubes for Wide-Band, Ultrafast Pulse Generation

Auteurs : Tawfique Hasan ; Zhipei Sun ; Pingheng Tan ; Daniel Popa ; Emmanuel Flahaut ; Edmund J. R. Kelleher ; Francesco Bonaccorso ; Fengqiu Wang ; Zhe Jiang ; Felice Torrisi ; Giulia Privitera ; Valeria Nicolosi ; Andrea C. Ferrari

Source :

RBID : Hal:hal-01139257

English descriptors

Abstract

We demonstrate wide-band ultrafast optical pulse generation at 1, 1.5, and 2 μm using a single-polymer composite saturable absorber based on double-wall carbon nanotubes (DWNTs). The freestanding optical quality polymer composite is prepared from nanotubes dispersed in water with poly(vinyl alcohol) as the host matrix. The composite is then integrated into ytterbium-, erbium-, and thulium-doped fiber laser cavities. Using this single DWNT–polymer composite, we achieve 4.85 ps, 532 fs, and 1.6 ps mode-locked pulses at 1066, 1559, and 1883 nm, respectively, highlighting the potential of DWNTs for wide-band ultrafast photonics.

Url:
DOI: 10.1021/nn500767b

Links to Exploration step

Hal:hal-01139257

Le document en format XML

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<div type="abstract" xml:lang="en">We demonstrate wide-band ultrafast optical pulse generation at 1, 1.5, and 2 μm using a single-polymer composite saturable absorber based on double-wall carbon nanotubes (DWNTs). The freestanding optical quality polymer composite is prepared from nanotubes dispersed in water with poly(vinyl alcohol) as the host matrix. The composite is then integrated into ytterbium-, erbium-, and thulium-doped fiber laser cavities. Using this single DWNT–polymer composite, we achieve 4.85 ps, 532 fs, and 1.6 ps mode-locked pulses at 1066, 1559, and 1883 nm, respectively, highlighting the potential of DWNTs for wide-band ultrafast photonics.</div>
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<idno type="halRefHtml">ACS Nano, American Chemical Society, 2014, vol. 8 (n° 5), pp. 4836-4847. <10.1021/nn500767b></idno>
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<title xml:lang="en">Double-Wall Carbon Nanotubes for Wide-Band, Ultrafast Pulse Generation</title>
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<forename type="first">Tawfique</forename>
<surname>Hasan</surname>
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<forename type="first">PingHeng</forename>
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<persName>
<forename type="first">Daniel</forename>
<surname>Popa</surname>
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<persName>
<forename type="first">Emmanuel</forename>
<surname>Flahaut</surname>
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<persName>
<forename type="first">Edmund J. R.</forename>
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<forename type="first">Francesco</forename>
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<idno type="halAuthorId">1143331</idno>
<affiliation ref="#struct-308222"></affiliation>
</author>
<author role="aut">
<persName>
<forename type="first">Fengqiu</forename>
<surname>Wang</surname>
</persName>
<idno type="halAuthorId">1153655</idno>
<affiliation ref="#struct-305873"></affiliation>
</author>
<author role="aut">
<persName>
<forename type="first">Zhe</forename>
<surname>Jiang</surname>
</persName>
<idno type="halAuthorId">1143332</idno>
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</author>
<author role="aut">
<persName>
<forename type="first">Felice</forename>
<surname>Torrisi</surname>
</persName>
<idno type="halAuthorId">1153656</idno>
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</author>
<author role="aut">
<persName>
<forename type="first">Giulia</forename>
<surname>Privitera</surname>
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<forename type="first">Valeria</forename>
<surname>Nicolosi</surname>
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<persName>
<forename type="first">Andrea C.</forename>
<surname>Ferrari</surname>
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<title level="j">ACS Nano</title>
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<biblScope unit="issue">n° 5</biblScope>
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<term xml:lang="en">Polymer composites</term>
<term xml:lang="en">Double-wall carbon nanotubes</term>
<term xml:lang="en">Saturable absorber</term>
<term xml:lang="en">Ultrafast laser</term>
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<classCode scheme="halDomain" n="spi.mat">Engineering Sciences [physics]/Materials</classCode>
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<abstract xml:lang="en">We demonstrate wide-band ultrafast optical pulse generation at 1, 1.5, and 2 μm using a single-polymer composite saturable absorber based on double-wall carbon nanotubes (DWNTs). The freestanding optical quality polymer composite is prepared from nanotubes dispersed in water with poly(vinyl alcohol) as the host matrix. The composite is then integrated into ytterbium-, erbium-, and thulium-doped fiber laser cavities. Using this single DWNT–polymer composite, we achieve 4.85 ps, 532 fs, and 1.6 ps mode-locked pulses at 1066, 1559, and 1883 nm, respectively, highlighting the potential of DWNTs for wide-band ultrafast photonics.</abstract>
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