Graphdiyne-polymer composites for a hybrid bound-state pulsed fiber laser

Author:

Nie Liang1,Zhao Yang1,Guo Penglai,Wang Wei1ORCID,Jin Zhiwen2,Zhang Danni1,Li XiaohuiORCID,Guo Yixuan,Chai Tong,Liu Ruisheng

Affiliation:

1. Xi’an Technological University

2. Lanzhou University

Abstract

In this paper, the graphdiyne (GDY)-polymethyl methacrylate (PMMA) films are prepared by a spin-coating method. The PMMA films have the function of isolating GDY from air and protecting the GDY from mechanical damage. The nonlinear optical properties of GDY-PMMA films are probed experimentally. The nonlinear optical responses of GDY-PMMA films with a modulation depth of ∼4.94% and saturated magnetization of ∼0.3MW/cm2 are proved. When the GDY-PMMA films are applied to an erbium-doped hybrid passively mode-locked fiber laser (saturable absorber), the bound-state solitons, which are also called soliton molecules, can be obtained. The soliton molecule has a time separation of 13.31 ps, and the spectral modulation period of 0.58 nm. Along with the pump power increase, the separation of bound-state pulses becomes larger. When the pump power is fixed, stable bound solitons can be observed without any degeneration for more than 4.5 h. It is demonstrated that GDY-PMMA films have excellent nonlinear optical performance in a near-infrared regime, which we believe can be a novel type of photonics instrument and has a number of properties that are potentially promising in the ultrafast properties of laser.

Funder

Academic Leader and Academic Backbones, Shaanxi Normal University

Shaanxi International Cooperation project

Starting Grants of Shaanxi Normal University

Key Scientific Research Plan of Education Department of Shaanxi

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Engineering (miscellaneous),Electrical and Electronic Engineering

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