Endlessly single-mode photonic crystal fiber

1997 ◽  
Vol 22 (13) ◽  
pp. 961 ◽  
Author(s):  
T. A. Birks ◽  
J. C. Knight ◽  
P. St. J. Russell
2018 ◽  
Vol 0 (0) ◽  
Author(s):  
Izaddeen Kabir Yakasai ◽  
Atta Rahman ◽  
Pg Emeroylariffion Abas ◽  
Feroza Begum

AbstractA porous core photonic crystal fiber (PCF) for transmitting terahertz waves is reported and characterized using finite element method. It is shown that by enveloping an octagonal core consisting of only circular air holes in a hexagonal cladding, it is possible to attain low effective material loss that is 73.8% lower than the bulk material absorption loss at 1.0 THz operating frequency. Moreover, a low confinement loss of 7.53×10–5 cm−1 and dispersion profile of 1.0823±0.06 ps/THz/cm within 0.7–1 THz are obtained using carefully selected geometrical design parameters. Other guiding properties such as single-mode operation, bending loss, and effective area are also investigated. The structural design of this porous core PCF is comparatively simple since it contains noncomplex lattices and circular shaped air holes; and therefore, may be implemented using existing fabrication techniques. Due to its auspicious guiding properties, the proposed fiber may be used in single mode terahertz imaging and other short distance terahertz applications.


2018 ◽  
Vol 0 (0) ◽  
Author(s):  
Mohammad Rakibul Islam ◽  
Md. Arif Hossain ◽  
Syed Iftekhar Ali ◽  
Jakeya Sultana ◽  
Md. Saiful Islam

AbstractA novel photonic crystal fiber (PCF) based on TOPAS, consisting only rectangular slots is presented and analyzed in this paper. The PCF promises not only an extremely low effective material loss (EML) but also a flattened dispersion over a broad frequency range. The modal characteristics of the proposed fiber have been thoroughly investigated using finite element method. The fiber confirms a low EML of 0.009 to 0.01 cm−1 in the frequency range of 0.77–1.05 THz and a flattened dispersion of 0.22±0.01 ps/THz/cm. Besides, some other significant characteristics like birefringence, single mode operation and confinement loss have also been inspected. The simplicity of the fiber makes it easily realizable using the existing fabrication technologies. Thus it is anticipated that the new fiber has the potential to ensure polarization preserving transmission of terahertz signals and to serve as an efficient medium in the terahertz frequency range.


2011 ◽  
Author(s):  
Hongjun Zheng ◽  
Chongqing Wu ◽  
Zhi Wang ◽  
Shanliang Liu ◽  
Huishan Yu ◽  
...  

2012 ◽  
Vol 20 (22) ◽  
pp. 24465 ◽  
Author(s):  
Tao Zhu ◽  
Fufeng Xiao ◽  
Laicai Xu ◽  
Min Liu ◽  
Ming Deng ◽  
...  

2010 ◽  
Vol 37 (6) ◽  
pp. 1589-1593
Author(s):  
李宏雷 Li Honglei ◽  
娄淑琴 Lou Shuqin ◽  
郭铁英 Guo Tieying ◽  
王立文 Wang Liwen ◽  
陈卫国 Chen Weiguo ◽  
...  

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