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CuS 纳米片在近红外区域的超短脉冲产生。

CuS nanosheets for ultrashort pulse generation in the near-infrared region.

机构信息

Xi'an University of Posts and Telecommunications, Electronic Engineering Institute, Xi'an, Shaanxi 710121, PR China.

出版信息

Nanoscale. 2019 Mar 28;11(13):6045-6051. doi: 10.1039/c9nr00080a.

DOI:10.1039/c9nr00080a
PMID:30869727
Abstract

2D metal chalcogenide materials have received enormous attention due to their extraordinary bio-chemical, electronic, magnetic, thermal and optical properties. Compared with the typical two-dimensional transition metal dichalcogenides (TMDs) and topological insulators, cuprous sulfide (Cu2S) has very different two-dimensional lattice structures, along with excellent electro-catalysis and high conductivity. However, the nonlinear optical properties of Cu2S have never been studied until now. Here, the nonlinear photonics characteristics of Cu2S and its application in ultrafast lasers have been systematically studied for the first time. Through optical deposition of Cu2S nanosheets on a tapered fiber, the nonlinear optical properties of Cu2S nanosheets are measured through the interaction with the evanescent field. The results indicate that superior nonlinear saturable absorption properties with a modulation depth of 0.51% are achieved. An erbium-doped fiber (EDF) laser is constructed to verify the performance of the Cu2S saturable absorber (SA). The results show that an output pulse with 8.06 MHz repetition rate, 1.04 ps pulse duration, 1530.4 nm central wavelength and 3.1 nm spectral width without an obvious Kelly sideband is obtained. Considering the diversity of the metal chalcogenide family, various engineering applications may be developed from the nonlinear saturable absorption characteristics of Cu2S, including optical fiber communication/sensing, precision optical metrology, material processing and nonlinear optics.

摘要

二维金属硫属化物由于其非凡的生化、电子、磁、热和光学特性而受到极大关注。与典型的二维过渡金属二硫属化物 (TMD) 和拓扑绝缘体相比,硫化亚铜 (Cu2S) 具有非常不同的二维晶格结构,同时具有出色的电催化性能和高导电性。然而,直到现在,Cu2S 的非线性光学性质从未被研究过。在这里,首次系统地研究了 Cu2S 的非线性光子学特性及其在超快激光器中的应用。通过在锥形光纤上光学沉积 Cu2S 纳米片,通过与消逝场的相互作用来测量 Cu2S 纳米片的非线性光学性质。结果表明,实现了调制深度为 0.51%的优越非线性饱和吸收特性。构建了掺铒光纤 (EDF) 激光器来验证 Cu2S 饱和吸收体 (SA) 的性能。结果表明,获得了重复率为 8.06 MHz、脉冲持续时间为 1.04 ps、中心波长为 1530.4nm 和光谱宽度为 3.1nm 的无明显凯利边带的输出脉冲。考虑到金属硫属化物家族的多样性,Cu2S 的非线性饱和吸收特性可能会开发出各种工程应用,包括光纤通信/传感、精密光学测量、材料加工和非线性光学。

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