Publication | Open Access
Carbon nanotube films for ultrafast broadband technology
233
Citations
15
References
2009
Year
EngineeringFiber-optic CommunicationCarbon-based MaterialOptical PropertiesNonlinear Reflectivity MeasurementUltrafast Broadband TechnologyCarbon-based FilmsCarbon NanotubesFiber LaserMaterials SciencePhotonicsFiber OpticNanomaterialsBroadband Saturable AbsorptionApplied PhysicsHigh Reflectance PropertiesLight AbsorptionUltrafast OpticsNanotubesOptoelectronicsFibre Amplifier
Mode-locked sub-picosecond operation of Yb-, Er- and Tm:Hodoped fiber lasers operating at 1.05 microm, 1.56 microm and 1.99 microm, respectively, is demonstrated using the same sample carbon nanotube-based saturable absorber mirror. A mesh of single-walled carbon nanotubes was deposited on an Ag-mirror using a one-step dry-transfer contact press method to combine broadband saturable absorption and high reflectance properties. The novel fabrication method of the polymer-free absorber and device parameters determined using nonlinear reflectivity measurement are described in detail. To our knowledge the observed operation bandwidth of approximately 1 microm is the broadest reported to date for a single carbon nanotube-based saturable absorber.
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