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  • Search: subject:"Bose–Einstein condensates"
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Josephson effect 14 Bose-Einstein condensates in periodic potentials 13 03.75.Lm Tunneling 12 solitons 12 vortices 12 and topological excitations 10 Bose–Einstein condensates 8 05.30.Jp Boson systems 4 05.45.Yv Solitons 4 03.75.Gg Entanglement and decoherence in Bose-Einstein condensates 3 03.75.Kk Dynamic properties of condensates 3 03.75.Mn Multicomponent condensates 3 collective and hydrodynamic excitations 3 spinor condensates 3 superfluid flow 3 67.85.De Dynamic properties of condensates 2 67.85.Hj Bose-Einstein condensates in optical potentials 2 73.43.Nq Quantum phase transitions 2 Optical lattice 2 and superfluid flow 2 excitations 2 topological excitations 2 03.65.Ge Solutions of wave equations: bound states 1 03.65.Sq Semiclassical theories and applications 1 03.65.Ud Entanglement and quantum nonlocality (e.g. EPR paradox 1 03.70.+k Theory of quantized fields 1 03.75.Hh Static properties of condensates 1 03.75.Lm 1 05.30.-d Quantum statistical mechanics 1 31.15.xk Path-integral methods 1 37.10.Gh Atom traps and guides 1 37.10.Jk Atoms in optical lattices 1 42.50.Dv Quantum state engineering and measurements 1 42.50.Xa Optical tests of quantum theory 1 42.65.Tg Optical solitons 1 64.60.My Metastable phases 1 64.70.Tg Quantum phase transitions 1 68.65.Cd Superlattices 1 71.23.An Theories and models 1 74.50.+r Tunneling phenomena 1
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Fedele, R. 2 Achilleos, V.A. 1 Blakie, P. Blair 1 Buonsante, P. 1 Castin, Y. 1 Chaudhury, R. 1 Chen, Yan 1 Chen, Yong 1 Citro, R. 1 Deng, X. 1 Filho, Victo S. 1 Francisco, Gerson 1 Frantzeskakis, D.J. 1 Frinkle, Karl H. 1 Fu, Li-Bin 1 Ghanbari, Saeed 1 Giampaolo, S. M. 1 Hannaford, Peter 1 Hinrichs, D. 1 Horikis, T.P. 1 Illuminati, F. 1 Jiang, X. Y. 1 Jovanovic, D. 1 Jovanović, D. 1 Kevrekidis, P.G. 1 Kieu, Tien D. 1 Kopeć, T.K. 1 Kwiecień, J.T. 1 Lakoba, T.I. 1 Laloë, F. 1 Li, Yun 1 Liu, C. F. 1 Machado, Birajara S. 1 Malomed, B. 1 Malomed, B.A. 1 Man'ko, M. A. 1 Man'ko, V. I. 1 Mazets, I. E. 1 Minguzzi, A. 1 Mullin, W. J. 1
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The European Physical Journal B - Condensed Matter and Complex Systems 16 Physica A: Statistical Mechanics and its Applications 6 Mathematics and Computers in Simulation (MATCOM) 4
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RePEc 26
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A Galërkin projection and multiple scales approach to Feshbach resonance in Bose–Einstein condensates
Frinkle, Karl H. - In: Mathematics and Computers in Simulation (MATCOM) 74 (2007) 2, pp. 126-134
dynamics of Bose–Einstein condensates are considered. A Galërkin projection approach is applied to reduce the partial …
Persistent link: https://www.econbiz.de/10011050158
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Slowly moving matter-wave gap soliton propagation in weak random optical lattices
Zhang, M. R.; Jiang, X. Y.; Zhang, Y. L.; Shi, L.; Zi, J.; … - In: The European Physical Journal B - Condensed Matter and … 58 (2007) 3, pp. 269-278
We systematically investigate slowly moving matter-wave gap soliton propagation in weak random optical lattices. With the weak randomness, an effective-particle theory is constructed to show that the motion of a gap soliton is similar to a particle moving in random potentials. Based on the...
Persistent link: https://www.econbiz.de/10009280841
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Stability of two-dimensional, controlled, Bose-Einstein coherent states
Jovanović, D.; Fedele, R. - In: The European Physical Journal B - Condensed Matter and … 60 (2007) 3, pp. 363-368
Two-dimensional stability of a controlled Bose-Einstein condensation state, in the form of a nonlinear Schrödinger soliton [JETP Lett. <Emphasis Type="Bold">80 535 (2004)], is studied for the condensations with both repulsive and attractive inter-atom interactions. The Gross-Pitaevski equation is solved numerically,...</emphasis>
Persistent link: https://www.econbiz.de/10009282113
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1D stability analysis of filtering and controlling the solitons in Bose-Einstein condensates
Nicola, S. De; Fedele, R.; Jovanovic, D.; Malomed, B.; … - In: The European Physical Journal B - Condensed Matter and … 54 (2006) 1, pp. 113-119
We present one-dimensional (1D) stability analysis of a recently proposed method to filter and control localized states of the Bose–Einstein condensate (BEC), based on novel trapping techniques that allow one to conceive methods to select a particular BEC shape by controlling and manipulating...
Persistent link: https://www.econbiz.de/10009281120
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Positive- and negative-mass solitons in Bose–Einstein condensates with optical lattices
Sakaguchi, H.; Malomed, B.A. - In: Mathematics and Computers in Simulation (MATCOM) 69 (2005) 5, pp. 492-501
We study the dynamics of solitons in Bose–Einstein condensates (BECs) loaded into an optical lattice (OL), which is …
Persistent link: https://www.econbiz.de/10011050596
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Interferencing intensity in two Bose–Einstein condensates with Josephson-like coupling
Wang, Xiao-Guang; Pan, Shao-Hua; Yang, Guo-Zhen - In: Physica A: Statistical Mechanics and its Applications 274 (1999) 3, pp. 484-490
We derive a general expression for interferencing intensity in two Bose–Einstein condensates with Josephson …-like coupling when the two Bose–Einstein condensates are initially in arbitrary quantum pure states. The expression can be used to … numerically calculate the intensity. As examples, we study the time behaviors of the intensity when the two Bose–Einstein …
Persistent link: https://www.econbiz.de/10010664905
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