Interaction-induced conducting-nonconducting transition of ultra-cold atoms in 1D optical lattices
arXiv:1203.5094 · doi:10.1088/1367-2630/15/6/063026
Abstract
The study of time-dependent, many-body transport phenomena is increasingly within reach of ultra-cold atom experiments. We show that the introduction of spatially inhomogeneous interactions, e.g., generated by optically-controlled collisions, induce negative differential conductance in the transport of atoms in 1D optical lattices. Specifically, we simulate the dynamics of interacting fermionic atoms via a micro-canonical transport formalism within both mean-field and a higher-order approximation, as well as with time-dependent DMRG. For weakly repulsive interactions, a quasi steady-state atomic current develops that is similar to the situation occurring for electronic systems subject to an external voltage bias. At the mean-field level, we find that this atomic current is robust against the details of how the interaction is switched on. Further, a conducting-to-nonconducting transition exists when the interaction imbalance exceeds some threshold from both our approximate and time-dependent DMRG simulations. This transition is preceded by the atomic equivalent of negative differential conductivity observed in transport across solid-state structures.
10 pages, 8 figures
References in corpus (12)
- Experimental demonstration of painting arbitrary and dynamic potentials for Bose-Einstein condensates
- Conduction of Ultracold Fermions Through a Mesoscopic Channel
- Interaction-controlled transport of an ultracold Fermi gas
- All-Optical Formation of Quantum Degenerate Mixtures
- Approach to steady state transport in nanoscale conductors
- Slow Mass Transport and Statistical Evolution of An Atomic Gas Across the Superfluid-Mott Insulator Transition
- Quantum distillation: dynamical generation of low-entropy states of strongly correlated fermions in an optical lattice
- Bosonic and fermionic transport phenomena of ultra-cold atoms in 1D optical lattices
- Optical control of Feshbach resonances in Fermi gases using molecular dark states
- Tuning the mobility of a driven Bose-Einstein condensate via diabatic Floquet bands
- Migration of bosonic particles across a Mott insulator to superfluid phase interface
- Dynamical crossover between the infinite-volume and empty-lattice limits of ultra-cold fermions in 1D optical lattices
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