用于中近红外超连续产生和光通信的混合卤化物光子晶体光纤研究

Q3 Engineering
Sandeep Kumar Jain, Mohit Kumar Sharma, S. Vyas
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引用次数: 0

摘要

本研究介绍了一种中红外范围的宽带超连续发生(SCG)技术,该技术采用了一种在光通信条件下具有显著非线性的掺瑀多材料微结构光纤设计。该光纤具有 As2Se3 的单芯和 AsSe2 包层区呈六角形排列的三环 As2S5 棒。所报告的 PCF 设计在 5.3 μm 泵浦波长下的有效面积和非线性系数分别为 59.4174 μm2 和 219.36 W-1 km-1。此外,它的色度色散曲线在 5-15 μm 的大波长范围内近乎为零,且呈扁平状,这对中红外区域的宽带超连续光谱非常有利。具体来说,在 100 毫米长的光纤中,脉冲宽度和脉冲峰值功率分别为 200 fs 和 10 kW,这项研究工作展示了从 1000 纳米扩展到超过 15000 纳米的 SCG。这些极非线性 PCF 是非线性应用(如产生慢光和超连续)的有力竞争者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of hybrid chalcogenide photonic crystal fiber for MIR supercontinuum generation and optical communication
This study describes a wideband supercontinuum generation (SCG) in the mid-infrared range using a chalcogenide multi-material microstructured fiber design with significant non-linearity under optical communication. The fiber has a single core of As2Se3 and three rings of As2S5 rods arranged in hexagonal pattern in the AsSe2 cladding region. The reported PCF design has effective area and nonlinear coefficients as 59.4174 μm2 and 219.36 W−1 km−1 respectively at 5.3 μm pump wavelength. Additionally, it has a chromatic dispersion profile that is nearly zero and flattened over a large wavelength range of 5–15 µm, which is advantageous for broadband supercontinuum spectrum in the mid-infrared region. Specifically, with pulse width and pulse peak power of 200 fs and 10 kW, respectively, for a 100 mm fibre length, this research work illustrates the SCG that expands from 1000 nm to over 15,000 nm. These extremely nonlinear PCFs are robust contenders for applications that are nonlinear in nature, such as the generation of slow-light and supercontinuum.
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来源期刊
Journal of Optical Communications
Journal of Optical Communications Engineering-Electrical and Electronic Engineering
CiteScore
2.90
自引率
0.00%
发文量
86
期刊介绍: This is the journal for all scientists working in optical communications. Journal of Optical Communications was the first international publication covering all fields of optical communications with guided waves. It is the aim of the journal to serve all scientists engaged in optical communications as a comprehensive journal tailored to their needs and as a forum for their publications. The journal focuses on the main fields in optical communications
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