摘要
Laser state active controlling is challenging under the influence of inherent loss and other nonlinear effects in ultrafast systems.Seeking an extension of degree of freedom in optical devices based on low-dimensional materials may be a way forward.Herein,the anisotropic quasi-one-dimensional layered material Ta2PdS6 was utilized as a saturable absorber to modulate the nonlinear parameters effectively in an ultrafast system by polarization-dependent absorption.The polarization-sensitive nonlinear optical response facilitates the Ta2PdS6-based mode-lock laser to sustain two types of laser states,i.e.,conventional soliton and noise-like pulse.The laser state was switchable in the single fiber laser with a mechanism revealed by numerical simulation.Digital coding was further demonstrated in this platform by employing the laser as a codable light source.This work proposed an approach for ultrafast laser state active controlling with low-dimensional material,which offers a new avenue for constructing tunable on-fiber devices.
基金
the Jiangsu Province Key Research and Development Program(Grant No.BE2021007-3,BE2023009-5)
the National Natural Science Foundation of China(Grant No.62035015,62061136013)
the Postgraduate Scientific Research Innovation Project of Hunan Province(Grant No.QL20230006)
the Hubei Province Key Laboratory of Systems Science in Metallurgical Process(Grant No.Y202208)
the Open Fund of Key Laboratory for Intelligent Nano Materials and Devices of the Ministry of Education NJ2023002(Grant No.INMD-2023M06)
J.W.acknowledges the support from the CAS Young Talent program under Grant No.E3291305
the Vacuum Interconnected Nanotech Workstation(Nano-X)of Suzhou Institute of Nano-tech and Nano-bionics(SINANO),Chinese Academy of Sciences is also acknowledged.