학술논문

High Contrast All-Optical Dual Wavelength Switching of Femtosecond Pulses in Soft Glass Dual-Core Optical Fiber
Document Type
Periodical
Source
Journal of Lightwave Technology J. Lightwave Technol. Lightwave Technology, Journal of. 39(15):5111-5117 Aug, 2021
Subject
Communication, Networking and Broadcast Technologies
Photonics and Electrooptics
Nonlinear optics
Optical switches
Ultrafast optics
Optical solitons
Glass
Optical pulse shaping
Optical buffering
Dual-core optical fibers
soft glass optical fibers
nonlinear fiber optics
all-optical switching
asymmetric coupler
Language
ISSN
0733-8724
1558-2213
Abstract
All-optical switching of 75 fs pulses centered at 1560 nm, driven by 270 fs, 1030 nm pulses in a dual-core optical fiber exhibiting high index contrast is presented. The fiber is made of a thermally matched pair of lead silicate and borosilicate glasses used as core and cladding material, respectively. The novel switching approach is based on nonlinear balancing of dual-core asymmetry, by control pulse intensity induced group velocity reduction of the fast fiber channel. Due to the fiber core made of soft glass with high nonlinearity high switching contrast exceeding 20 dB is reached by using control pulses of only few nanojoule energy. The optimum fiber length is 14 mm, which closely match the calculated coupling length at the signal wavelength. The results express significant progress in comparison to similar studies based on self-switching of solitonic pulses in dual-core fibers and represent high application potential.