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Phase structure of soliton molecules

A. HauseUniversität Rostock, Institut für Physik, Rostock, GermanyH. HartwigUniversität Rostock, Institut für Physik, Rostock, GermanyBirger SeifertUniversität Rostock, Institut für Physik, Rostock, GermanyH. StolzUniversität Rostock, Institut für Physik, Rostock, GermanyMichael C. BöhmUniversität Rostock, Institut für Physik, Rostock, GermanyF. MitschkeUniversität Rostock, Institut für Physik, Rostock, Germany
2007en
ABI

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Temporal optical soliton molecules were recently demonstrated; they potentially allow further increase of data rates in optical telecommunication. Their binding mechanism relies on the internal phases, but these have not been experimentally accessible so far. Conventional frequency-resolved optical gating techniques are not suited for measurement of their phase profile: Their algorithms fail to converge due to zeros both in their temporal and their spectral profile. We show that the VAMPIRE (very advanced method of phase and intensity retrieval of $E$-fields) method performs reliably. With VAMPIRE the phase profile of soliton molecules has been measured, and further insight into the mechanism is obtained.

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