photonic crystal fibres
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2020 ◽  
Vol 9 (1) ◽  
Author(s):  
Hao Lin ◽  
Ling Lu

AbstractThe success of photonic crystal fibres relies largely on the endless variety of two-dimensional photonic crystals in the cross-section. Here, we propose a topological bandgap fibre whose bandgaps along in-plane directions are opened by generalised Kekulé modulation of a Dirac lattice with a vortex phase. Then, the existence of mid-gap defect modes is guaranteed to guide light at the core of this Dirac-vortex fibre, where the number of guiding modes equals the winding number of the spatial vortex. The single-vortex design provides a single-polarisation single-mode for a bandwidth as large as one octave.


2020 ◽  
Vol 30 (2) ◽  
pp. 143
Author(s):  
Thanh Doan Thai ◽  
Quy Quang Ho ◽  
Thang Manh Nguyen

In this paper, we study of the coherent Stokes generation in a transient Raman regime by Hydrogen gas-filled hollow-core photonic crystal fibres (HC-PCFs) configuration. The temporal and spatial evolution of the pump and Stokes field envelopes as well as the coherence and population inversion is numerically observed. The influence of the pump pulse width and gas pressure on the energy exchange along fiber and Stokes generation efficiency is investigated.


Author(s):  
Christian Niklas ◽  
Simon Göllner ◽  
Fabian Müller ◽  
Hainer Wackerbarth ◽  
Georgios Ctistis

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