Engineering bright matter-wave solitons of dipolar condensates

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Abstract

We present a comprehensive analysis of the form and interaction of dipolar bright solitons across the full parameter space afforded by dipolar Bose-Einstein condensates, revealing the rich behavior introduced by the non-local nonlinearity. Working within an effective one-dimensional description, we map out the existence of the soliton solutions and show three collisional regimes: free collisions, bound state formation and soliton fusion. Finally, we examine the solitons in their full three-dimensional form through a variational approach; along with regimes of instability to collapse and runaway expansion, we identify regimes of stability which are accessible to current experiments.

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Edmonds, M. J., Bland, T., Doran, R., & Parker, N. G. (2017). Engineering bright matter-wave solitons of dipolar condensates. New Journal of Physics, 19(2). https://doi.org/10.1088/1367-2630/aa5a6b

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