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2D GeP-based photonic device for near-infrared and mid-infrared ultrafast photonics
W
J
张
J
J
S
T
X
S
张
DOI:10.1515/nanoph-2020-0248.png)
Abstract
En 中文
Germanium phosphide (GeP), a rising star of novel two-dimensional (2D) material composed of Group IV-V elements, has been extensively studied and applied in photonics thanks to its broadband optical absorption, strong light-matter interaction and flexible bandgap structure. Here, we show the strong nonlinear optical (NLO) properties of 2D GeP nanoflakes in the broadband range with open-aperture Z-scan technique to explore the performance of 2D GeP microfiber photonic devices (GMPDs) in near-infrared (near-IR) and mid-infrared (mid-IR) ultrafast photonics. Our results suggest that employing the GMPD as an optical device in an erbium-doped fiber laser (EDFL) system results in ultrashort pulses and rogue waves (RWs) at 1.55 mu m. Likewise, by the incorporation of GMPD into a thulium-doped fiber laser (TDFL) system, stable ultrashort pulse operation is also achieved at 2.0 mu m. We expect these findings to be an excellent GMPD that can be applied in mode-locked fiber lasers to open up new avenues for its development and application in ultrafast photonics.
Keywords:
2D GeP nanoflakes
mid-infrared
nonlinear optical properties
ultrashort pulses
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