Demonstration of amplified data transmission at 2 μm in a low-loss wide bandwidth hollow core photonic bandgap fiber

in: Optics Express (2013)
Heidt, Alexander M.; Becker, Martin; Li, Zhihong; Alam, Shaif-ul; Richardson, David J.; Petrovich, Marco N.; Poletti, Francesco; Wooler, John P.; Baddela, Naveen; Gray, David; Slavík, Radan; Parmigiani, Francesca; Wheeler, Natalie V.; Hayes, John; Numkam, Eric; Phelan, Richard; Kelly, Brian; Zhao, Jian; Garcia Gunning, Fatima; Ellis, Andrew; MacSuibhne, Naoise; Grüner-Nielsen, L.; Palsdottir, B.; Petropoulos, Periklis; O'Carroll, John
The first demonstration of a hollow core photonic bandgap fiber suitable for high-rate data transmission in the 2 μm waveband is presented. The fiber has a record low loss for this wavelength region (4.5 dB/m at 1980 nm) and a >150 nm wide surface-mode-free transmission window at the center of the bandgap. Detailed analysis of the optical modes and their propagation along the fiber, carried out using a time-of-flight technique in conjunction with spatially and spectrally resolved (S2) imaging, provides clear evidence that the HC-PBGF can be operated as quasi-single mode even though it supports up to four mode groups. Through the use of a custom built Thulium doped fiber amplifier with gain bandwidth closely matched to the fiber’s low loss window, error-free 8 Gbit/s transmission in an optically amplified data channel at 2008 nm is reported.

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