Layer-dependent nonlinear optical properties of two-dimensional InSe and its applications in waveguide lasers

The thickness-dependent third-order nonlinear optical properties of two-dimensional β -InSe and its potential applications as a saturable absorber in pulsed laser generation are investigated. InSe sheets with different layers are prepared by the chemical vapor deposition. Using open-aperture femtose...

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Veröffentlicht in:Optics express 2022-06, Vol.30 (13), p.23986-23999
Hauptverfasser: Lv, Hengyue, Chu, Lingrui, Wang, Shixiang, Sun, Shuo, Sun, Xiaoli, Jia, Yuechen, Chen, Feng
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Sprache:eng
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Zusammenfassung:The thickness-dependent third-order nonlinear optical properties of two-dimensional β -InSe and its potential applications as a saturable absorber in pulsed laser generation are investigated. InSe sheets with different layers are prepared by the chemical vapor deposition. Using open-aperture femtosecond Z-scan technique at 1030 nm, the modulation depth and nonlinear absorption coefficient are obtained to be 36% and -1.6 × 10 4 cm·GW -1 , respectively. The intrinsic mechanism of the layer-dependent energy band structure evolution is analyzed based on density functional theory, and the theoretical analysis is consistent with the experimental results. Based on a waveguide cavity, a Q -switched mode-locked laser at 1 µm with a repetition frequency of 8.51 GHz and a pulse duration of 28 ps is achieved by utilizing the layered InSe as a saturable absorber. This work provides an in-depth understanding of layer-dependent properties of InSe and extends its applications in laser technology for compact light devices.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.462811