Wang Yazhou, Li Zhengran, Yu Fei, Wang Meng, Han Ying, Hu Lili, Knight Jonathan
Opt Express. 2022 Jan 3;30(1):222-231. doi: 10.1364/OE.443075.
Surface modes (SM) are highly spatially localized modes existing at the core-cladding interface of photonic-bandgap hollow-core fiber (PBG-HCF). When coupling with SM, the air modes (AM) in the core would suffer a higher confinement loss despite being spectrally within the cladding photonic bandgap, and would be highly dispersive around the avoided crossing (anti-crossing) wavelength. In this paper, we numerically explored how such avoided crossings can play an important role in the tuning of the temperature dependence of group delay of AM of PBG-HCF. At higher temperatures, both the thermo-optic effect and thermal expansion contribute to the redshift of avoided crossing wavelength, giving rise to a temperature dependence of the AM dispersion. Numerical simulations show that the redshift of avoided crossing can significantly tune the thermal coefficient of delay (TCD) of PBG-HCF from -400 ps/km/K to 400 ps/km/K, approximately -120 ppm/K to 120 ppm/K. In comparison with the known tuning mechanism by thermal-induced redshift of photonic bandgap [Fokoua et al., Optica 4, 659, 2017], the tuning of TCD by SM coupling presents a much broader tuning range and higher efficiency. Our finding may provide a new route to design PBG-HCF for propagation time sensitive applications.
表面模式(SM)是存在于光子带隙空心光纤(PBG-HCF)纤芯-包层界面处的高度空间局域化模式。当与表面模式耦合时,尽管纤芯中的空气模式(AM)在光谱上处于包层光子带隙内,但它们会遭受更高的限制损耗,并且在避免交叉(反交叉)波长附近会具有高度色散性。在本文中,我们通过数值模拟探究了这种避免交叉如何在PBG-HCF空气模式群时延温度依赖性的调谐中发挥重要作用。在较高温度下,热光效应和热膨胀都会导致避免交叉波长的红移,从而产生空气模式色散的温度依赖性。数值模拟表明,避免交叉的红移可以将PBG-HCF的延迟热系数(TCD)从-400 ps/km/K显著调谐到400 ps/km/K,约为-120 ppm/K到120 ppm/K。与通过光子带隙热致红移的已知调谐机制[Fokoua等人,Optica 4, 659, 2017]相比,通过表面模式耦合对延迟热系数的调谐具有更宽的调谐范围和更高的效率。我们的发现可能为设计用于对传播时间敏感应用的PBG-HCF提供一条新途径。