Collisionally Inhomogeneous Bose-Einstein Condensates with a Linear Interaction Gradient

We study the evolution of a collisionally inhomogeneous matter wave in a spatial gradient of the interaction strength. Starting with a Bose-Einstein condensate with weak repulsive interactions in quasi-one-dimensional geometry, we monitor the evolution of a matter wave that simultaneously extends in...

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Veröffentlicht in:Physical review letters 2020-10, Vol.125 (18), p.183602-183602, Article 183602
Hauptverfasser: Di Carli, Andrea, Henderson, Grant, Flannigan, Stuart, Colquhoun, Craig D., Mitchell, Matthew, Oppo, Gian-Luca, Daley, Andrew J., Kuhr, Stefan, Haller, Elmar
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Sprache:eng
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Zusammenfassung:We study the evolution of a collisionally inhomogeneous matter wave in a spatial gradient of the interaction strength. Starting with a Bose-Einstein condensate with weak repulsive interactions in quasi-one-dimensional geometry, we monitor the evolution of a matter wave that simultaneously extends into spatial regions with attractive and repulsive interactions. We observe the formation and the decay of solitonlike density peaks, counterpropagating self-interfering wave packets, and the creation of cascades of solitons. The matter-wave dynamics is well reproduced in numerical simulations based on the nonpolynomial Schrödinger equation with three-body loss, allowing us to better understand the underlying behavior based on a wavelet transformation. Our analysis provides new understanding of collapse processes for solitons, and opens interesting connections to other nonlinear instabilities.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.125.183602