Adiabatic Preparation of a Heisenberg Antiferromagnet Using an Optical Superlattice
arXiv:1106.1628 · doi:10.1103/PhysRevLett.107.165301
Abstract
We analyze the possibility to prepare a Heisenberg antiferromagnet with cold fermions in optical lattices, starting from a band insulator and adiabatically changing the lattice potential. The numerical simulation of the dynamics in 1D allows us to identify the conditions for success, and to study the influence that the presence of holes in the initial state may have on the protocol. We also extend our results to two-dimensional systems.
5 pages, 4 figures + Supplementary Material (5 pages, 6 figures), published version
References in corpus (8)
- Matrix Product Density Operators: Simulation of finite-T and dissipative systems
- Time-resolved Observation and Control of Superexchange Interactions with Ultracold Atoms in Optical Lattices
- A lattice of double wells for manipulating pairs of cold atoms
- Implementation of Spin Hamiltonians in Optical Lattices
- Cooling in strongly correlated optical lattices: prospects and challenges
- Controlling and Detecting Spin Correlations of Ultracold Atoms in Optical lattices
- Phase diagram of anisotropic boson t-J model
- Antiferromagnetic noise correlations in optical lattices
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