Study and Analysis of Photonic Crystal Fiber for Broadband Laser Source Design

M. Faisal, Sk. M. Jahangir Kabir
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Abstract

Photonic Crystal Fiber (PCF) has been a topic of extensive research in the field of nonlinear fiber optics. It is due to its combination of linear and nonlinear properties which ultimately results in the phenomenon having various types of applications. One of the phenomena is supercontinuum generation that has been extensively studied numerically and experimentally over the last few decades as it has important applications in the field of medical imaging and sensing. In this paper, we numerically analysed and studied PCF of hexagonal core with various parameters and propose our novel ‘Star in Hexagon’ design as a good candidate for the broadband supercontinuum generation and hence a broadband laser source. We numerically pumped a long 10 mm PCF of this kind at 3.1 um wavelength with a pulse having a power of 4000 W and a temporal width of 50 fs. A broadband supercontinuum ranging from 1.7 um to 18 um was obtained. The generated spectrum is quite well in the mid-infrared region. Hence it can be utilised for Mid – Infrared (MIR) applications.
用于宽带激光光源设计的光子晶体光纤的研究与分析
光子晶体光纤(PCF)是非线性光纤领域中一个广泛研究的课题。正是由于它的线性和非线性特性的结合,最终导致了这种现象具有各种类型的应用。其中一种现象是超连续统的产生,由于它在医学成像和传感领域有重要的应用,在过去的几十年里得到了广泛的数值和实验研究。在本文中,我们数值分析和研究了不同参数的六角形核心的PCF,并提出了我们的新颖的“六角形星”设计作为宽带超连续谱产生的良好候选者,从而成为宽带激光源。我们在3.1 um波长处用功率为4000 W、时间宽度为50 fs的脉冲数值泵浦了一个长10 mm的这种PCF。得到了1.7 ~ 18 μ m的宽带超连续谱。生成的光谱在中红外区域相当好。因此,它可以用于中红外(MIR)应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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