Numerical Analysis of Transversely Porous Core PCF with Square Airhole Cladding

Author(s):  
Anurag Upadhyay ◽  
Y. K. Prajapati ◽  
Rajeev Tripathi
2017 ◽  
Vol 56 (24) ◽  
pp. 6993 ◽  
Author(s):  
Jianfeng Luo ◽  
Fengjun Tian ◽  
Hongkun Qu ◽  
Li Li ◽  
Jianzhong Zhang ◽  
...  

Sensors ◽  
2020 ◽  
Vol 20 (22) ◽  
pp. 6500
Author(s):  
Abdullah Al-Mamun Bulbul ◽  
Farjana Imam ◽  
Md. Abdul Awal ◽  
M. A. Parvez Mahmud

A novel, rectangle-based, porous-core photonic crystal fiber (PCF) has been modeled for the efficient propagation of a THz wave. The performance of the anticipated model has been assessed using the finite element method (FEM) in the range of 0.5–1.5 THz. Both the fiber core and cladding are modeled with rectangular air holes. Numerical analysis for this model reveals that the model has a lower amount of dispersion of about 0.3251 ps/THz/cm at 1.3 THz. Compared to the other THz waveguides, the model offers an ultra-lower effective material loss of 0.0039 cm−1 at the same frequency. The confinement loss is also lower for this model. Moreover, this model has a high-power fraction of about 64.90% at the core in the x-polarization mode. However, the effective area, birefringence, and numerical aperture have also been evaluated for this model. Maintenance of standard values for all the optical parameters suggests that the proposed PCF can efficiently be applied in multichannel communication and several domains of the THz technology.


2013 ◽  
pp. 42-49 ◽  
Author(s):  
Pamela Vocale ◽  
Michela Geri ◽  
Luca Cattani ◽  
Gian Luca Morini ◽  
Marco Spiga
Keyword(s):  

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