WS_2 saturable absorber for dissipative soliton mode locking at 106 and 155 µm

Yonggang Wang, Ting Mei, Xuetao Gan, Jianlin Zhao, Yishan Wang, Yadong Wang, Haibo Zeng, Shengli Zhang, Wending Zhang, Dong Mao
2015-10-09

SCID:  54.1/zzkff8k9
Transition-metal dichalcogenides, such as tungsten disulfide (WS2) and molybdenium disulfide (MoS2), are highly anisotropic layered materials and have attracted growing interest from basic research to practical applications due to their exotic physical property that may complement graphene and other semiconductor materials. WS2 nanosheets are found to exhibit broadband nonlinear saturable absorption property, and saturable absorbers (SAs) are fabricated by depositing WS2 nanosheets on side-polished fibers. Attributing to the weak evanescent field and long interaction length, the WS2 nanosheets are not exposed to large optical intensity, which allows the SA to work at the high-power regime. The SAs are used to mode lock erbium- and ytterbium-doped fiber lasers with normal dispersion, producing trains of dissipative soliton at 1.55 and 1.06 µm respectively. Simulations show that the bandgap of WS2 nanosheets decreases from 1.18 to 0.02 and 0.65 eV by introducing W and S defects respectively, which may contribute to the broadband saturable absorption property of the WS2.
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2015-10-09
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Yonggang Wang
Ting Mei
Xuetao Gan
Jianlin Zhao
Yishan Wang
Yadong Wang
Haibo Zeng
Shengli Zhang
Wending Zhang
Dong Mao
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