Abstract

Theoretical simulations about modulating anti-dark vector bisolitons are reported in this manuscript. The modulation bases on an optical fiber modulation system, and four kinds of soliton parameters are considered for variation. The input central wavelengths in orthogonal polarization directions are assumed to be same or slightly different, corresponding to polarization locked state or group-velocity locked state. The modulated pulse shapes or optical spectra at output port will show their own characteristics, depending on different modulation parameters. For example, modulated bisolitons in orthogonal directions demonstrate obvious pulse oscillations when projection angle varies, in the condition of different central wavelengths. These simulations are useful to study modulating optical fiber vector bisolitons out of fiber laser oscillator, and have potential applications in optical fiber vector soliton communication, quantum information processing and so on.

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