Periodic Quantum Tunneling and Parametric Resonance with Cigar-Shaped Bose-Einstein Condensates
arXiv:cond-mat/0205590 · doi:10.1088/0953-4075/35/14/315
Abstract
We study the tunneling properties of a cigar-shaped Bose-Einstein condensate by using an effective 1D nonpolynomial nonlinear Schrödinger equation (NPSE). First we investigate a mechanism to generate periodic pulses of coherent matter by means of a Bose condensate confined in a potential well with an oscillating height of the energy barrier. We show that is possible to control the periodic emission of matter waves and the tunneling fraction of the Bose condensate. We find that the number of emitted particles strongly increases if the period of oscillation of the height of the energy barrier is in parametric resonance with the period of oscillation of the center of mass of the condensate inside the potential well. Then we use NPSE to analyze the periodic tunneling of a Bose-Einstein condensate in a double-well potential which has an oscillating energy barrier. We show that the dynamics of the Bose condensate critically depends on the frequency of the oscillating energy barrier. The macroscopic quantum self-trapping (MQST) of the condensate can be suppressed under the condition of parametric resonance between the frequency of the energy barrier and the frequency of oscillation through the barrier of the very small fraction of particles which remain untrapped during MQST.
latex, 23 pages, 10 figures, to be published in J. Phys. B (Atom. Mol.), related papers can be found at http://www.mi.infm.it/salasnich/tdqg.html
References in corpus (5)
- Josephson Junction Arrays with Bose-Einstein Condensates
- Effective wave-equations for the dynamics of cigar-shaped and disc-shaped Bose condensates
- Bloch oscillations and mean-field effects of Bose-Einstein condensates in 1-D optical lattices
- Pulsed Macroscopic Quantum Tunneling of Falling Bose Condensates
- Anharmonic parametric excitation in optical lattices
Cited by in corpus (27)
- Symmetric and asymmetric solitons in linearly coupled Bose-Einstein condensates trapped in optical lattices
- Parametric excitation of a Bose-Einstein condensate in a 1D optical lattice
- Stability diagram and growth rate of parametric resonances in Bose-Einstein condensates in one-dimensional optical lattices
- Improved Semiclassical Approximation for Bose-Einstein Condensates: Application to a BEC in an Optical Potential
- Spontaneous soliton symmetry breaking in two-dimensional coupled Bose-Einstein condensates supported by optical lattices
- Dynamics of a BEC bright soliton in an expulsive potential
- Modulation of breathers in cigar-shaped Bose-Einstein condensates
- Atomic Josephson junction with two bosonic species
- Coherent control of mesoscopic tunneling in a Bose-Einstein condensate
- Nonlinear Lattice Dynamics of Bose-Einstein Condensates
- Heteroclinic structure of parametric resonance in the nonlinear Schrödinger equation
- Resonant and Non-Resonant Modulated Amplitude Waves for Binary Bose-Einstein Condensates in Optical Lattices
- Solitons and Josephson-type oscillations in Bose-Einstein condensates with spin-orbit coupling and time-varying Raman frequency
- Nonlinear quantum model for atomic Josephson junctions with one and two bosonic species
- Bose-Einstein Condensates in Superlattices
- Stable solitons in coupled Ginzburg-Landau equations describing Bose-Einstein condensates and nonlinear optical waveguides and cavities
- A Perturbative Analysis of Modulated Amplitude Waves in Bose-Einstein Condensates
- Spontaneous symmetry breaking and collapse in bosonic Josephson junctions
- Parametric resonance of a Bose-Einstein condensate in a ring trap with periodically driven interactions
- A Hybrid Lagrangian Variation Method for Bose-Einstein Condensates in Optical Lattices
- Dimensional Effects on Solitonic Matter and Optical Waves with Normal and Anomalous Dispersion
- Macroscopic Matter Wave Quantum Tunnelling
- Parametric oscillations in a dissipative bosonic Josephson junction
- Entropy production within a pulsed Bose-Einstein condensate
- Collision-Dependent Atom Tunnelling Rate in Bose-Einstein Condensates
- Modelling assisted tunneling on the Bloch sphere using the Quantum Composer
- Quasiperiodic Dynamics in Bose-Einstein Condensates in Periodic Lattices and Superlattices