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Updated: Aug 15, 2026

Quasi-light Storage for Optical Data Packets
Published on: February 6, 2014
Soliton compression and pulse-train generation by use of microchip Q-switched pulses in Bragg gratings
Joe T Mok1, Ian C M Littler, Eduard Tsoy
1ARC Centre of Excellence for Ultrahigh-Bandwidth Devices for Optical Systems, School of Physics, University of Sydney, Sydney, NSW 2006, Australia. j.mok@physics.usyd..edu.au
Abstract:
Pulse compression and pulse-train generation are demonstrated by use of kilowatt 580 ps pulses generated by a compact (15 cm x 3 cm x 3 cm) microchip Q-switched laser followed by a fiber Bragg grating. A 12-fold pulse compression to 45 ps with five times peak power enhancement is achieved at 1.4 kW through soliton effect compression in the fiber grating. At 2.5 kW, modulational instability leads to a train of high-contrast sub-100 ps pulses. These demonstrations take advantage of the ultrastrong dispersion at frequencies close to the edge of the photonic bandgap. Experimental results are discussed in the context of the nonlinear Schrödinger equation and are compared with simulations of the nonlinear coupled-mode equations.

