We describe a method to create fractional quantum Hall states of atoms confined in optical lattices. We show that the dynamics of the atoms in the lattice is analogous to the motion of a charged particle in a magnetic field if an oscillating quadrupole potential is applied together with a periodic modulation of the tunneling between lattice sites. In a suitable parameter regime the ground state in the lattice is of the fractional quantum Hall type, and we show how these states can be reached by melting a Mott-insulator state in a superlattice potential. Finally, we discuss techniques to observe these strongly correlated states.Physic
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
We provide a detailed analysis of our previously proposed scheme [ J. Ruostekoski, G. V. Dunne and J...
We provide a detailed analysis of our previously proposed scheme [ J. Ruostekoski, G. V. Dunne and J...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
Summarization: We propose a scheme to realize the fractional quantum Hall system with atoms confined...
We analyze a recently proposed method to create fractional quantum Hall FQH states of atoms confine...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
http://arxiv.org/abs/1212.3552International audienceWe present a robust scheme by which fractional q...
http://arxiv.org/abs/1212.3552International audienceWe present a robust scheme by which fractional q...
We consider the purity-based entanglement detection scheme introduced in [C. Moura Alves and D. Jaks...
We consider the purity-based entanglement detection scheme introduced in [C. Moura Alves and D. Jaks...
We consider the purity-based entanglement detection scheme introduced in [C. Moura Alves and D. Jaks...
We perform variational Monte Carlo calculations to show that bosons in a rotating optical lattice wi...
Jaynes-Cummings-Hubbard arrays provide unique opportunities for quantum emulation as they exhibit co...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
We provide a detailed analysis of our previously proposed scheme [ J. Ruostekoski, G. V. Dunne and J...
We provide a detailed analysis of our previously proposed scheme [ J. Ruostekoski, G. V. Dunne and J...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
Summarization: We propose a scheme to realize the fractional quantum Hall system with atoms confined...
We analyze a recently proposed method to create fractional quantum Hall FQH states of atoms confine...
We consider interacting bosonic atoms in an optical lattice subject to a large simulated magnetic fi...
http://arxiv.org/abs/1212.3552International audienceWe present a robust scheme by which fractional q...
http://arxiv.org/abs/1212.3552International audienceWe present a robust scheme by which fractional q...
We consider the purity-based entanglement detection scheme introduced in [C. Moura Alves and D. Jaks...
We consider the purity-based entanglement detection scheme introduced in [C. Moura Alves and D. Jaks...
We consider the purity-based entanglement detection scheme introduced in [C. Moura Alves and D. Jaks...
We perform variational Monte Carlo calculations to show that bosons in a rotating optical lattice wi...
Jaynes-Cummings-Hubbard arrays provide unique opportunities for quantum emulation as they exhibit co...
We explore the behavior of interacting bosonic atoms in an optical lattice subject to a large artifi...
We provide a detailed analysis of our previously proposed scheme [ J. Ruostekoski, G. V. Dunne and J...
We provide a detailed analysis of our previously proposed scheme [ J. Ruostekoski, G. V. Dunne and J...