Title :
Soliton pulse compression in adiabatically tapered silicon photonic wires
Author :
Lavdas, Spyros ; Driscoll, Jeffrey B. ; Grote, Richard R. ; Osgood, Richard M. ; Panoiu, Nicolae Coriolan
Author_Institution :
Dept. of Electron. & Electr. Eng., Univ. Coll. London, London, UK
Abstract :
We demonstrate that one can achieve compression of femtosecond optical pulse by more than a factor of three in millimetre-long dispersion engineered silicon (Si) photonic wire waveguides (SiPWWs) when the devices are operated in the soliton regime. The SiPWWs are designed such that they exhibit a negative second-order dispersion coefficient, β2, over more than 700 nm, which allows for broadband device operation. Our computational study is based on a rigorous nonlinear propagation model, which describes the frequency dispersion up to the third order, free-carrier (FC) dispersion and FC absorption, self-phase modulation, two-photon absorption (TPA), the frequency dispersion of waveguide nonlinearity, and the FC dynamics [1,2]. Using this model we demonstrate that by choosing the parameters of the input pulse such that one operates in the soliton regime (β2<;0) and employing adiabatically tapered SiPWWs, in order to monotonously decrease the (anomalous) dispersion coefficient, the width of femtosecond pulses can be reduced from hundreds of fs to just a few tens of fs.
Keywords :
elemental semiconductors; high-speed optical techniques; optical dispersion; optical pulse compression; optical solitons; optical waveguides; self-phase modulation; silicon; two-photon processes; Si; adiabatically tapered silicon photonic wires; femtosecond optical pulse compression; free-carrier absorption; free-carrier dispersion; millimetre-long dispersion engineered silicon photonic wire waveguides; negative second- order dispersion coefficient; nonlinear propagation model; self-phase modulation; soliton pulse compression; two-photon absorption; waveguide nonlinearity; Dispersion; Optical waveguides; Photonics; Silicon; Solitons; Ultrafast optics; Wires;
Conference_Titel :
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC), 2013 Conference on and International Quantum Electronics Conference
Conference_Location :
Munich
Print_ISBN :
978-1-4799-0593-5
DOI :
10.1109/CLEOE-IQEC.2013.6800834