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Graphene Mode-Locked Ultrafast Laser

ACS Nano · 2010 · Vol. 4(2) · pp. 803–810
Z. SunTawfique HasanFelice TorrisiD. PopaGiulia PriviteraFengqiu WangFrancesco BonaccorsoDenis M. BaskoAndrea C. Ferrari

Abstract

Graphene is at the center of a significant research effort. Near-ballistic transport at room temperature and high mobility make it a potential material for nanoelectronics. Its electronic and mechanical properties are also ideal for micro- and nanomechanical systems, thin-film transistors, and transparent and conductive composites and electrodes. Here we exploit the optoelectronic properties of graphene to realize an ultrafast laser. A graphene-polymer composite is fabricated using wet-chemistry techniques. Pauli blocking following intense illumination results in saturable absorption, independent of wavelength. This is used to passively mode-lock an erbium-doped fiber laser working at 1559 nm, with a 5.24 nm spectral bandwidth and approximately 460 fs pulse duration, paving the way to graphene-based photonics.

Advanced Fiber Laser TechnologiesDiamond and Carbon-based Materials ResearchLaser-Matter Interactions and ApplicationsGrapheneMaterials scienceUltrashort pulseOptoelectronicsSaturable absorptionLaserPhotonicsMode-lockingGraphene nanoribbonsNanotechnology

MeSH terms

AdsorptionCarbonElectronsKineticsLasersTelecommunications

Funding

  • Engineering and Physical Sciences Research Council
Citations
1,969
FWCI
86.91
field-weighted impact
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43
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References
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