Dinh Quang Ho, Pniewski Jacek, Van Hieu Le, Ramaniuk Aleksandr, Long Van Cao, Borzycki Krzysztof, Xuan Khoa Dinh, Klimczak Mariusz, Buczyński Ryszard
Appl Opt. 2018 May 10;57(14):3738-3746. doi: 10.1364/AO.57.003738.
A photonic crystal fiber (PCF) made of fused silica glass, infiltrated with carbon tetrachloride (CCl), is proposed as a new source of supercontinuum (SC) light. Guiding properties in terms of effective refractive index, attenuation, and dispersion of the fundamental mode are studied numerically. As a result, two optimized structures are selected and verified against SC generation in detail. The dispersion characteristic of the first structure has the zero-dispersion wavelength at 1.252 μm, while the dispersion characteristic of the second structure is all-normal and equals -4.37 ps·nm·km at 1.55 μm. SC generation was demonstrated for the wavelengths 1.064 μm, 1.35 μm, and 1.55 μm. We prove the possibility of coherent, octave-spanning SC generation with 300 fs pulses with only 0.8 nJ of energy in-coupled into the core with each of the studied structures. Proposed fibers are fully compatible with all-silica fiber systems and PCFs with wide mode area, and can also be used for all-fiber SC sources. The proposed solution may lead to new low-cost all-fiber optical systems.
一种由熔融石英玻璃制成、内部填充四氯化碳(CCl)的光子晶体光纤(PCF)被提议作为一种新型超连续谱(SC)光源。从有效折射率、衰减和基模色散等方面对其导光特性进行了数值研究。结果,选择了两种优化结构,并针对超连续谱产生进行了详细验证。第一种结构的色散特性在1.252μm处具有零色散波长,而第二种结构的色散特性为全正色散,在1.55μm处等于 -4.37 ps·nm·km。对1.064μm、1.35μm和1.55μm波长的超连续谱产生进行了演示。我们证明了利用所研究的每种结构,将仅0.8 nJ能量的300 fs脉冲耦合到纤芯中,有可能实现相干的倍频程超连续谱产生。所提议的光纤与全石英光纤系统以及具有宽模场面积的光子晶体光纤完全兼容,并且还可用于全光纤超连续谱光源。所提出的解决方案可能会带来新型低成本全光纤光学系统。