Transition radiation by matter-wave solitons in optical lattices
A.V. Yulin, D.V. Skryabin, and P.St.J. Russell

TL;DR
This paper investigates how matter-wave solitons in optical lattices emit dispersive waves, providing analytical and numerical insights into their radiation behavior and decay rates under realistic experimental conditions.
Contribution
It introduces a theoretical framework for understanding radiation from matter-wave solitons in optical lattices, validated by numerical simulations.
Findings
Analytical expressions for radiation parameters
Numerical validation of decay rates
Agreement with experimental parameters
Abstract
We demonstrate that matter-wave solitary pulses formed from Bose condensed atoms moving inside optical lattices continuously radiate dispersive matter waves with prescribed momentum. Our analytical results for the radiation parameters and the soliton decay rate are found to be in excellent agreement with numerical modelling performed for experimentally relevant parameters.
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