We provide a detailed analysis of our previously proposed scheme [ J. Ruostekoski, G. V. Dunne and J. Javanainen Phys. Rev. Lett. 88 180401 (2002)] to engineer the profile of the hopping amplitudes for atomic gases in a one-dimensional optical lattice so that the particle number becomes fractional. We consider a constructed system of a dilute two-species gas of fermionic atoms where the two components are coupled via a coherent electromagnetic field with a topologically nontrivial phase profile. We show both analytically and numerically how the resulting atomic Hamiltonian in a prepared dimerized optical lattice with a defect in the pattern of alternating hopping amplitudes exhibits a fractional fermion number. In particular, in the low-ene...
We propose a set of schemes to create and probe fractionally charged excitations of a fractional Che...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
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 a Fermi-Dirac atomic gas in a one-dimensional optical lattice coupled to a coherent elec...
We show that a dilute 2-species gas of Fermi-Dirac alkali-metal atoms in a periodic optical lattice ...
We analyze a recently proposed method to create fractional quantum Hall FQH states of atoms confine...
Quantum emitters, in particular, atomic arrays with subwavelength lattice constant, have been propos...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
Different quantum states of atoms in optical lattices can be nondestructively monitored through off-...
We study a fermionic atom optics counterpart of parametric down-conversion with photons. This can be...
We describe the controlled loading and measurement of number-squeezed states and Poisson states of a...
We study the behavior of excitations in the tilted one-dimensional Bose-Hubbard model. In the phase ...
We show that spin correlations of atoms in an optical lattice can be reconstructed by coupling the s...
We propose a set of schemes to create and probe fractionally charged excitations of a fractional Che...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...
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 a Fermi-Dirac atomic gas in a one-dimensional optical lattice coupled to a coherent elec...
We show that a dilute 2-species gas of Fermi-Dirac alkali-metal atoms in a periodic optical lattice ...
We analyze a recently proposed method to create fractional quantum Hall FQH states of atoms confine...
Quantum emitters, in particular, atomic arrays with subwavelength lattice constant, have been propos...
We show how off-resonant light scattering can provide quantitative information on antiferromagnetic ...
Different quantum states of atoms in optical lattices can be nondestructively monitored through off-...
We study a fermionic atom optics counterpart of parametric down-conversion with photons. This can be...
We describe the controlled loading and measurement of number-squeezed states and Poisson states of a...
We study the behavior of excitations in the tilted one-dimensional Bose-Hubbard model. In the phase ...
We show that spin correlations of atoms in an optical lattice can be reconstructed by coupling the s...
We propose a set of schemes to create and probe fractionally charged excitations of a fractional Che...
We study the atom-light interaction in the fully quantum regime, with the focus on off-resonant ligh...
We study off-resonant collective light scattering from ultracold atoms trapped in an optical lattice...