arXiv · cond-mat/0506809
d-wave resonating valence bond states of fermionic atoms in optical lattices
Abstract
We study controlled generation and measurement of superfluid d-wave resonating valence bond (RVB) states of fermionic atoms in 2D optical lattices. Starting from loading spatial and spin patterns of atoms in optical superlattices as pure quantum states from a Fermi gas, we adiabatically transform this state to an RVB state by change of the lattice parameters. Results of exact time-dependent numerical studies for ladders systems are presented, suggesting generation of RVB states on timescale smaller than typical experimental decoherence times.
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Simon Trebst, Ulrich Schollwoeck, Matthias Troyer, Peter Zoller. 2006-05-31. d-wave resonating valence bond states of fermionic atoms in optical lattices. https://doi.org/10.1103/physrevlett.96.250402
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