We report on the generation of conventional and dissipative solitons in erbium-doped fiber lasers by the evanescent field interaction between the propagating light and a multilayer molybdenum disulfide (MoS2) thin film. The MoS2 film is fabricated by depositing the MoS2 water-ethanol mixture on a D-shape-fiber (DF) repetitively. The measured nonsaturable loss, saturable optical intensity, and the modulation depth of this device are 13.3%, 110 MW/cm(2), and 3.4% respectively. Owing to the very low nonsaturable loss, the laser threshold of conventional soliton is as low as 4.8 mW. The further increase of net cavity dispersion to normal regime, stable dissipation soliton pulse trains with a spectral bandwidth of 11.7 nm and pulse duration of 1...
<p> The report presents conventional soliton operation in an anomalous-dispersion fiber laser with ...
An MoS2-based Q-switched erbium-doped fiber laser with a low threshold and a wide range of repetitio...
The importance of ultrafast fiber lasers technology in science and engineering continues to grow as ...
We experimentally demonstrate a stable and simple mode locked erbium doped fiber laser (EDFL) utiliz...
We fabricate a free-standing few-layer molybdenum disulfide (MoS2)–polymer composite by liquid phase...
The authors demonstrate the generation of soliton mode-locked pulses from an erbium-doped fibre ring...
We demonstrate an ultrafast fiber laser based on transition metal dichalcogenide materials which are...
We demonstrate an ultrafast fiber laser based on transition metal dichalcogenide materials which are...
Abstract The two-dimensional (2D) layered material MoS2 has attracted numerous attentions for electr...
In this work, we have experimentally demonstrated the ultrafast laser in Erbium-doped fiber laser us...
using a multi-layered molybdenum disufide (MoS2) as a Saturable Absorber (SA). The MoS2 film was obt...
<p> We experimentally investigated the nonlinear saturable absorption characteristics of molybdenum...
We demonstrated an all-fiber mode-locked Thulium-Holmium co-doped fiber laser (THDFL) based on molyb...
<p> The single-, dual- and triple-wavelength passively mode-locked erbium-doped fiber lasers are de...
We demonstrated an all-fiber mode-locked Thulium-Holmium co-doped fiber laser (THDFL) based on molyb...
<p> The report presents conventional soliton operation in an anomalous-dispersion fiber laser with ...
An MoS2-based Q-switched erbium-doped fiber laser with a low threshold and a wide range of repetitio...
The importance of ultrafast fiber lasers technology in science and engineering continues to grow as ...
We experimentally demonstrate a stable and simple mode locked erbium doped fiber laser (EDFL) utiliz...
We fabricate a free-standing few-layer molybdenum disulfide (MoS2)–polymer composite by liquid phase...
The authors demonstrate the generation of soliton mode-locked pulses from an erbium-doped fibre ring...
We demonstrate an ultrafast fiber laser based on transition metal dichalcogenide materials which are...
We demonstrate an ultrafast fiber laser based on transition metal dichalcogenide materials which are...
Abstract The two-dimensional (2D) layered material MoS2 has attracted numerous attentions for electr...
In this work, we have experimentally demonstrated the ultrafast laser in Erbium-doped fiber laser us...
using a multi-layered molybdenum disufide (MoS2) as a Saturable Absorber (SA). The MoS2 film was obt...
<p> We experimentally investigated the nonlinear saturable absorption characteristics of molybdenum...
We demonstrated an all-fiber mode-locked Thulium-Holmium co-doped fiber laser (THDFL) based on molyb...
<p> The single-, dual- and triple-wavelength passively mode-locked erbium-doped fiber lasers are de...
We demonstrated an all-fiber mode-locked Thulium-Holmium co-doped fiber laser (THDFL) based on molyb...
<p> The report presents conventional soliton operation in an anomalous-dispersion fiber laser with ...
An MoS2-based Q-switched erbium-doped fiber laser with a low threshold and a wide range of repetitio...
The importance of ultrafast fiber lasers technology in science and engineering continues to grow as ...