Publication | Open Access
Sub-200 fs soliton mode-locked fiber laser based on bismuthene saturable absorber
327
Citations
59
References
2018
Year
Optical MaterialsEngineeringStable Soliton PulsesHigh-power LasersOptical PropertiesBismuthene NanosheetsOptical SolitonBismuthene Saturable AbsorberFiber LaserNanophotonicsMaterials SciencePhotonicsPhysicsPhotonic MaterialsFiber OpticPhotonic DeviceElectro-optics DeviceOptoelectronicsApplied PhysicsFew-layer BismutheneFibre Amplifier
Few-layer bismuthene is an emerging two-dimensional material in the fields of physics, chemistry, and material science. However, its nonlinear optical property and the related photonics device have been seldom studied so far. Here, we demonstrate a sub-200 fs soliton mode-locked erbium-doped fiber laser (EDFL) using a microfiber-based bismuthene saturable absorber for the first time, to the best of our knowledge. The bismuthene nanosheets are synthesized by the sonochemical exfoliation method and transferred onto the taper region of a microfiber by the optical deposition method. Stable soliton pulses centered at 1561 nm with the shortest pulse duration of about 193 fs were obtained. Our findings unambiguously imply that apart from its fantastic electric and thermal properties, few-layer bismuthene may also possess attractive optoelectronic properties for nonlinear photonics, such as mode-lockers, Q-switchers, optical modulators and so on.
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