Wei Chen, Zhu Xiushan, Norwood Robert A, Song Feng, Peyghambarian N
Opt Express. 2013 Dec 2;21(24):29488-504. doi: 10.1364/OE.21.029488.
High power mid-infrared (mid-IR) supercontinuum (SC) laser sources in the 3-12 µm region are of great interest for a variety of applications in many fields. Although various mid-IR SC laser sources have been proposed and investigated experimentally and theoretically in the past several years, power scaling of mid-IR SC lasers beyond 3 μm with infrared edges extending beyond 7 μm are still challenges because the wavelengths of most previously used pump sources are below 2 μm. These problems can be solved with the recent development of mode-locked fiber lasers at 3 μm. In this paper, high power mid-IR SC laser sources based on dispersion engineered tellurite and chalcogenide fibers and pumped by ultrafast lasers at 3 µm are proposed and investigated. Our simulation results show that, when a W-type tellurite fiber with a zero dispersion wavelength (ZDW) of 2.7 µm is pumped at 2.78 μm, the power proportion of the SC laser beyond 3 µm can exceed 40% and the attainable SC output power of the proposed solid-cladding tellurite fiber is one order of magnitude higher than that of existing microstructured tellurite fibers. Our calculation also predicts that a very promising super-broadband mid-IR SC fiber laser source covering two atmospheric windows and molecules' "fingerprint" region can be obtained with a microstructured AsSe chalcogenide fiber pumped at 2.78 μm.
3 - 12微米波段的高功率中红外(mid - IR)超连续谱(SC)激光源在许多领域的各种应用中具有重要意义。尽管在过去几年中已经提出并从实验和理论上研究了各种中红外超连续谱激光源,但对于波长超过3微米且红外边缘延伸超过7微米的中红外超连续谱激光器,功率扩展仍然是挑战,因为大多数先前使用的泵浦源波长低于2微米。随着最近3微米锁模光纤激光器的发展,这些问题可以得到解决。本文提出并研究了基于色散工程碲酸盐和硫系光纤,并由3微米超快激光器泵浦的高功率中红外超连续谱激光源。我们的模拟结果表明,当零色散波长(ZDW)为2.7微米的W型碲酸盐光纤在2.78微米处泵浦时,波长超过3微米的超连续谱激光的功率比例可以超过40%,并且所提出的实芯包层碲酸盐光纤可实现的超连续谱输出功率比现有的微结构碲酸盐光纤高一个数量级。我们的计算还预测,通过在2.78微米处泵浦的微结构AsSe硫系光纤,可以获得一个非常有前景的覆盖两个大气窗口和分子“指纹”区域的超宽带中红外超连续谱光纤激光源。