Phase separation and dynamics of two-component Bose-Einstein condensates
نویسندگان
چکیده
We study the interactions between two atomic species in a binary Bose-Einstein condensate to revisit the conditions for miscibility, oscillatory dynamics between the species, steady-state solutions, and their stability. By employing a variational approach for a quasi-one-dimensional, two-atomic species condensate, we obtain equations of motion for the parameters of each species: amplitude, width, position, and phase. A further simplification leads to a reduction of the dynamics into a simple classical Newtonian system where components oscillate in an effective potential with a frequency that depends on the harmonic trap strength and the interspecies coupling parameter. We develop explicit conditions for miscibility that can be interpreted as a phase diagram that depends on the harmonic trap’s strength and the interspecies coupling parameter. We numerically illustrate the bifurcation scenario whereby nontopological, phase-separated states of increasing complexity emerge out of a symmetric state as the interspecies coupling is increased. The symmetry-breaking dynamical evolution of some of these states is numerically monitored and the associated asymmetric states are also explored.
منابع مشابه
The Dynamics of Component Separation in a Binary Mixture of Bose-Einstein Condensates
We present studies of the time-evolution of a twocomponent system of Bose-Einstein condensates (BEC) in the |F = 1, mf = −1〉 and |2, 1〉 spin states of Rb. The two condensates are created with a well-defined relative phase and complete spatial overlap. In subsequent evolution they undergo complex relative motions that tend to preserve the total density profile. The motions quickly damp out, leav...
متن کاملar X iv : c on d - m at / 9 80 81 05 v 2 1 2 A ug 1 99 8 Having It Both Ways : Distinguishable Yet Phase - Coherent Mixtures of Bose - Einstein Condensates
We have begun a series of experiments on mixed bosonic quantum fluids. Our system is mixed Bose-Einstein condensates in dilute Rb-87. By simultaneously trapping the atoms in two different hyperfine states, we are able to study the dynamics of component separation and of the relative quantum phase of two interpenetrating condensates. Population can be converted from one state to the other at a r...
متن کاملMagnetic domains in spinor Bose-Einstein condensates
Related Articles Matter wave switching in Bose–Einstein condensates via intensity redistribution soliton interactions J. Math. Phys. 52, 023515 (2011) Interactions in low-dimensional spinor bosonic gases Low Temp. Phys. 36, 752 (2010) Painlevé singularity structure analysis of three component Gross–Pitaevskii type equations J. Math. Phys. 50, 113520 (2009) Phase separation of two-component Bose...
متن کاملPhase Separation of Multi-Component Bose-Einstein Condensates in an Optical Lattice
In this paper, we analyze phase separation of multi-component Bose-Einstein Condensates (BECs) in the presence of a strong optical lattice. This paper is in threefold. We first prove that when the inter-component scattering lengths go to infinity, phase separation of a multi-component BEC occurs. Furthermore, particles repel each other and form segregated nodal domains. Secondly, we show that t...
متن کاملDisordered Bose-Einstein condensates in quasi-one-dimensional magnetic microtraps.
We analyze the effects of a random magnetic potential in a microfabricated waveguide for ultracold atoms. We find that the shape and position fluctuations of a current carrying wire induce a strong Gaussian correlated random potential with a length scale set by the atom-wire separation. The theory is used to explain quantitatively the observed fragmentation of the Bose-Einstein condensates in a...
متن کاملar X iv : c on d - m at / 9 80 81 05 v 1 1 1 A ug 1 99 8 Having It Both Ways : Distinguishable Yet Phase - Coherent Mixtures of Bose - Einstein
We have begun a series of experiments on mixed bosonic quantum fluids. Our system is mixed Bose-Einstein condensates in dilute Rb-87. By simultaneously trapping the atoms in two different hyperfine states, we are able to study the dynamics of component separation and of the relative quantum phase of two interpenetrating condensates. Population can be converted from one state to the other at a r...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2009