Tunable self-assembled spin chains of strongly interacting cold atoms
arXiv:1512.06722 · doi:10.1088/1367-2630/18/4/045011
Abstract
We have developed an efficient computational method to treat long, one-dimensional systems of strongly-interacting atoms forming self-assembled spin chains. Such systems can be used to realize many spin chain model Hamiltonians tunable by the external confining potential. As a concrete demonstration, we consider quantum state transfer in a Heisenberg spin chain and we show how to determine the confining potential in order to obtain nearly-perfect state transfer.
16 pages, 7 figures, 1 appendix, final version
Cited by in corpus (18)
- One-dimensional mixtures of several ultracold atoms: a review
- Few-body Bose gases in low dimensions -- a laboratory for quantum dynamics
- Momentum distributions and numerical methods for strongly interacting one-dimensional spinor gases
- CONAN -- the cruncher of local exchange coefficients for strongly interacting confined systems in one dimension
- Bose-Fermi Mapping and Multi-Branch Spin Chain Model for Strongly Interacting Quantum Gases in One-Dimension: Dynamics and Collective Excitations
- Controlled quantum state transfer in spin chains at the Quantum Speed Limit
- Pretty good quantum state transfer on isotropic and anisotropic Heisenberg spin chains with tailored site dependent exchange couplings
- One-Body Density Matrix and Momentum Distribution of Strongly Interacting One-Dimensional Spinor Quantum Gases
- Almost perfect transmission of multipartite entanglement through disordered and noisy spin chains
- Understanding the propagation of excitations in quantum spin chains with different kind of interactions
- Dynamical realization of magnetic states in a strongly interacting Bose mixture
- Effects of interaction imbalance in a strongly repulsive one-dimensional Bose gas
- Parity-dependent state transfer for direct entanglement generation
- A generalized effective spin-chain formalism for strongly interacting spinor gases in optical lattice
- Spectroscopy and spin dynamics for strongly interacting few spinor bosons in one-dimensional traps
- Generation of spin currents by a temperature gradient in a two-terminal device
- Spin and thermal current scaling at a -junction of XX spin chains
- Exact solution of a family of staggered Heisenberg chains with conclusive pretty good quantum state transfer