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Molybdenum disulfide (MoS_2) as a broadband saturable absorber for ultra-fast photonics

Optics Express · 2014 · Vol. 22(6) · pp. 7249–7249
Han ZhangShunbin LuJian ZhengJuan DuS. C. WenD. Y. TangKian Ping Loh

Abstract

The nonlinear optical property of few-layered MoS₂ nanoplatelets synthesized by the hydrothermal exfoliation method was investigated from the visible to the near-infrared band using lasers. Both open-aperture Z-scan and balanced-detector measurement techniques were used to demonstrate the broadband saturable absorption property of few-layered MoS₂. To explore its potential applications in ultrafast photonics, we fabricated a passive mode locker for ytterbium-doped fibre laser by depositing few-layered MoS₂ onto the end facet of optical fiber by means of an optical trapping approach. Our laser experiment shows that few-layer MoS₂-based mode locker allows for the generation of stable mode-locked laser pulse, centered at 1054.3 nm, with a 3-dB spectral bandwidth of 2.7 nm and a pulse duration of 800 ps. Our finding suggests that few-layered MoS₂ nanoplatelets can be useful nonlinear optical material for laser photonics devices, such as passive laser mode locker, Q-switcher, optical limiter, optical switcher and so on.

Advanced Fiber Laser TechnologiesDiamond and Carbon-based Materials ResearchLaser-Matter Interactions and ApplicationsMaterials scienceLaserOptoelectronicsSaturable absorptionUltrashort pulsePhotonicsOpticsFiber laserExtinction ratioMolybdenum disulfide

Funding

  • Ministry of Education, India
  • Xiangtan University
  • Program for New Century Excellent Talents in University
  • National Key Research and Development Program of China
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