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Design of a single-mode photonic crystal fibre with ultra-low material loss and large effective mode area in THz regime

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dc.contributor.author Ahmed, Kawsar
dc.contributor.author Paul, Bikash Kumar
dc.contributor.author Chowdhury, Sawrab
dc.contributor.author Sen, Shuvo
dc.contributor.author Islam, Md. Ibadul
dc.contributor.author Islam, Md. Shadidul
dc.contributor.author Hasan, Md. Rabiul
dc.contributor.author Asaduzzaman, Sayed
dc.date.accessioned 2018-08-28T04:31:13Z
dc.date.accessioned 2019-05-27T09:57:11Z
dc.date.available 2018-08-28T04:31:13Z
dc.date.available 2019-05-27T09:57:11Z
dc.date.issued 2017-08-29
dc.identifier.uri http://hdl.handle.net/20.500.11948/2957
dc.description.abstract A novel low-loss photonic crystal fibre (PCF) has been suggested for THz spectral applications. The proposed PCF contains five layers cladding with three layers core. The cladding and core region of the fibre are arranged in the octagonal and porous manner, respectively, where both the core and cladding vicinity are constituted by circular air cavities. The optical properties of the PCF are investigated by utilising the full vectorial finite-element method along with the perfect match layers boundary condition. All numerical outcomes show the ultra-low effective material loss of 0.049 cm -1 and large effective area of 3 × 10 -7 m 2 at 1 THz operating frequency. The power fraction is also considered as another significant parameter to design a low loss fibre. The almost more than half of the useful power (about 53.78% at f = 1 THz) goes through the core over the wider operating frequency. In addition this, the proposed single-mode PCF can be fabricated using the sol-gel method and is useful not only for high data traffic transmission applications but also for THz waveguide applications. Full Text Link: http://dx.doi.org/10.1049/iet-opt.2017.0028 en_US
dc.language.iso en en_US
dc.publisher IET Digital Library en_US
dc.subject microwave photonics en_US
dc.subject photonic crystals en_US
dc.subject optical fibre losses en_US
dc.subject finite element analysis en_US
dc.subject optical design techniques en_US
dc.subject optical fibre cladding en_US
dc.subject optical fibre fabrication en_US
dc.subject holey fibres en_US
dc.subject sol-gel processing en_US
dc.title Design of a single-mode photonic crystal fibre with ultra-low material loss and large effective mode area in THz regime en_US
dc.type Article en_US


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