Transport of Bose-Einstein condensates through two dimensional cavities
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The recent experimental advances in manipulating ultra-cold atoms make it feasible to study coherent transport of Bose-Einstein condensates (BEC) through various mesoscopic structures. In this work the quasi-stationary propagation of BEC matter waves through two dimensional cavities is investigated using numerical simulations within the mean-field approach of the Gross-Pitaevskii equation. The focus is on the interplay between interference effects and the interaction term in the non-linear wave equation. One sees that the transport properties show a complicated behaviour with multi-stability, hysteresis and dynamical instabilities for non-vanishing interaction. Furthermore, the prominent weak localization effect, which is a robust interference effect emerging after taking a configuration average, is reduced and partially inverted for non-vanishing interaction.
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Transport of Bose-Einstein condensates through two dimensional cavities, Timo Hartmann
- Sprache
- Erscheinungsdatum
- 2015
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- Titel
- Transport of Bose-Einstein condensates through two dimensional cavities
- Sprache
- Deutsch
- Autor*innen
- Timo Hartmann
- Verlag
- Univ.-Verl. Regensburg
- Erscheinungsdatum
- 2015
- ISBN10
- 3868451196
- ISBN13
- 9783868451191
- Reihe
- Dissertationsreihe der Fakultät für Physik der Universität Regensburg
- Kategorie
- Skripten & Universitätslehrbücher
- Beschreibung
- The recent experimental advances in manipulating ultra-cold atoms make it feasible to study coherent transport of Bose-Einstein condensates (BEC) through various mesoscopic structures. In this work the quasi-stationary propagation of BEC matter waves through two dimensional cavities is investigated using numerical simulations within the mean-field approach of the Gross-Pitaevskii equation. The focus is on the interplay between interference effects and the interaction term in the non-linear wave equation. One sees that the transport properties show a complicated behaviour with multi-stability, hysteresis and dynamical instabilities for non-vanishing interaction. Furthermore, the prominent weak localization effect, which is a robust interference effect emerging after taking a configuration average, is reduced and partially inverted for non-vanishing interaction.