Hybrid square-lattice photonic crystal fiber with high birefringence and negative dispersion

2012 ◽  
Author(s):  
So Eun Kim ◽  
Chung Ghiu Lee ◽  
Inkyu Moon ◽  
Chul-Sik Kee
2019 ◽  
Vol 40 (4) ◽  
pp. 401-410 ◽  
Author(s):  
Md. Ibadul Islam ◽  
Kawsar Ahmed ◽  
Shuvo Sen ◽  
Bikash Kumar Paul ◽  
Md. Shadidul Islam ◽  
...  

Abstract A photonic crystal fiber in square lattice architecture is numerically investigated and proposed for broadband dispersion compensation in optical transmission system. Simulation results reveal that it is possible to obtain an ultra-high negative dispersion of about −571.7 to −1889.7 (ps/nm.km) in the wavelength range of 1340 nm to 1640 nm. Experimentally it is demonstrated that the design fiber covers a high birefringence of order 4.74×10‒3 at the wavelength of 1550 nm. Here, numerical investigation of guiding properties and geometrical properties of the proposed PCF are conducted using the finite element method (FEM) with perfectly match layers. Moreover, it is established more firmly that the proposed fiber successfully compensates the chromatic dispersion of standard single mode in entire band of interest. Our result is attractive due to successfully achieve ultra-high negative dispersion that is more promisor than the prior best results.


2016 ◽  
Vol 45 (s1) ◽  
pp. 120001
Author(s):  
武丽敏 Wu Limin ◽  
宋 朋 Song Peng ◽  
王 静 Wang Jing ◽  
张海鹍 Zhang Haikun ◽  
周 城 Zhou Cheng ◽  
...  

2016 ◽  
Vol 45 (s1) ◽  
pp. 120001
Author(s):  
武丽敏 Wu Limin ◽  
宋 朋 Song Peng ◽  
王 静 Wang Jing ◽  
张海鹍 Zhang Haikun ◽  
周 城 Zhou Cheng ◽  
...  

2018 ◽  
Vol 55 (7) ◽  
pp. 070604
Author(s):  
廖昆 Liao Kun ◽  
廖健飞 Liao Jianfei ◽  
谢应茂 Xie Yingmao ◽  
王形华 Wang Xinghua ◽  
田华 Tian Hua

2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Md. Mahbub Hossain ◽  
Md. Shamim Ahsan ◽  
Niloy Sikder ◽  
Md. Ekhlasur Rahaman ◽  
Abdullah Al-Mamun Bulbul ◽  
...  

AbstractWe propose a perfectly square lattice photonic crystal fiber (PCF) which shows high birefringence and negative dispersion. To set up high asymmetry in the core, dual line imperfection is considered where the fill fraction ratio and defect air hole diameter exhibit significant impact on dispersion and birefringence. Numerical analyses of guiding properties of the proposed PCF are done using finite element method with perfectly matched layer boundary condition from 1.2 to 1.8 μm wavelength. The optimized square lattice PCF presents high birefringence of 2.48 × 10−2 and dispersion of −777.66 (ps/nm.km) at 1.55 μm wavelength. In addition, the proposed PCF offers ultra-low confinement and insertion loss at 1.55 μm wavelength. Moreover, −0.45 (ps/nm2.km) dispersion slope and 0.0045 nm−1 relative dispersion slope are observed at 1.55 μm wavelength. Additionally, the proposed PCF maintains dispersion and birefringence variation of ±30 (ps/nm.km) and ±0.00001 between 1.5 and 1.6 μm wavelength ranges, respectively. Furthermore, the proposed PCF shows high quality factor and low bit error rate at 10 dBm input power. We believe the proposed square lattice PCF can be deployed in wavelength division multiplexing based optical fiber transmission system for wide-band dispersion compensation.


Sign in / Sign up

Export Citation Format

Share Document