Transition-metal dichalcogenides heterostructure saturable absorbers for ultrafast photonics.
Opt Lett
; 42(21): 4279-4282, 2017 Nov 01.
Article
em En
| MEDLINE
| ID: mdl-29088142
In this Letter, high-quality WS2 film and MoS2 film were vertically stacked on the tip of a single-mode fiber in turns to form heterostructure (WS2-MoS2-WS2)-based saturable absorbers with all-fiber integrated features. Their nonlinear saturable absorption properties were remarkable, such as a large modulation depth (â¼16.99%) and a small saturable intensity (6.23 MW·cm-2). Stable pulses at 1.55 µm with duration as short as 296 fs and average power as high as 25 mW were obtained in an erbium-doped fiber laser system. The results demonstrate that the proposed heterostructures own remarkable nonlinear optical properties and offer a platform for adjusting nonlinear optical properties by stacking different transition-metal dichalcogenides or modifying the thickness of each layer, paving the way for engineering functional ultrafast photonics devices with desirable properties.
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MEDLINE
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En
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Opt Lett
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2017
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Article