Abstract
The temporal structure of sub-picosecond dual-frequency optical solitons propagating through a fiber amplifier is found to evolve either to a dual-frequency bound soliton state or a soliton train. The structure of the emerging optical state mainly depends on the balance between a retarded coherent response which is due to an inverted two-level medium and non-resonant cubic nonlinearity.
© 2001 Optical Society of America
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