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Mou, Chengbo; Arif, Raz; Rozhin, Alexsey; Turitsyn, Sergei K.; Lobach, Anatoly; Spitsina, Nataliya; Kazakov, Valery (2014)
Publisher: Optical Society of America
Languages: English
Types: Part of book or chapter of book
Subjects:

Classified by OpenAIRE into

arxiv: Physics::Optics
We have presented and demonstrated efficient mode locking of erbium doped fiber laser using graphene carboxymethylcellulose (CMC) polymer composites. The laser gives out soliton pulse with duration of ∼837 fs, and 0.19 nJ pulse energy.
  • The results below are discovered through our pilot algorithms. Let us know how we are doing!

    • [1] U.Keller, “Recent developments in compact ultrafast lasers,”Nature.424,831(2003) [2] H.A.Haus, “Mode locking of lasers,”J.Sele.Top.Quan Elec.6,1173 (2000) [3] T.Hasan et al, “Nanotube-polymer composites for ultrafast photonics,”Adv.Mater.21,3874(2009) [4]H.Zhang et al, “Large energy soliton erbium-doped fiber laser with a grapheme-polymer composite mode locker,” Appl.Phys.Lett.95,141103 (2009)
    • [5] Y.C.Meng et al, “Passively harmonically mode-locked fiber laser with low pumping power based on a grapheme saturable absorber,”Laser Phys.Lett. 9, 537 (2012)
    • [6] A.Martinez et al, “Optical deposition of grapheme and carbon nanotubes in a fiber ferrule for passive mode-locked lasing,” Opt.Express.18,23054 (2010)
    • [7] D.Popa et al, “sub 200fs pulse generation from a grapheme mode-locked fiber laser,” Appl.Phys.Lett.97,203106 (2010) [8] D.V.Khudyakov et al, “Saturable absorption of film composites with single-walled carbon nanotubes and graphene,”Applied Optics, 52, 150(2013)
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