We suggest and analyze a scheme to adiabatically cool bosonic atoms to picokelvin temperatures which should allow the observation of magnetic ordering via superexchange in optical lattices. The starting point is a gapped phase called the spin Mott phase, where each site is occupied by one spin-up and one spin-down atom. An adiabatic ramp leads to an xy-ferromagnetic phase. We show that the combination of time-dependent density matrix renormalization group methods with quantum trajectories can be used to fully address possible experimental limitations due to decoherence, and demonstrate that the magnetic correlations are robust for experimentally realizable ramp speeds. Using a microscopic master equation treatment of light scattering in the...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
The microscopic control available over cold atoms in optical lattices has opened new opportunities t...
International audienceThe microscopic control available over cold atoms in optical lattices has open...
We suggest and analyze a scheme to adiabatically cool bosonic atoms to picokelvin temperatures which...
We suggest and analyze a scheme to adiabatically cool bosonic atoms to picokelvin temperatures which...
International audienceWe analyze a scheme for preparation of magnetically ordered states of two-comp...
© 2020 The Author(s). Published by IOP Publishing Ltd We analyze a scheme for preparation of magneti...
International audienceWe analyze a scheme for preparation of magnetically ordered states of two-comp...
© 2020 The Author(s). Published by IOP Publishing Ltd We analyze a scheme for preparation of magneti...
International audienceWe analyze a scheme for preparation of magnetically ordered states of two-comp...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
Quantum many-body phases offer unique properties and emergent phenomena, making them an active area ...
Quantum many-body phases offer unique properties and emergent phenomena, making them an active area ...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
The microscopic control available over cold atoms in optical lattices has opened new opportunities t...
International audienceThe microscopic control available over cold atoms in optical lattices has open...
We suggest and analyze a scheme to adiabatically cool bosonic atoms to picokelvin temperatures which...
We suggest and analyze a scheme to adiabatically cool bosonic atoms to picokelvin temperatures which...
International audienceWe analyze a scheme for preparation of magnetically ordered states of two-comp...
© 2020 The Author(s). Published by IOP Publishing Ltd We analyze a scheme for preparation of magneti...
International audienceWe analyze a scheme for preparation of magnetically ordered states of two-comp...
© 2020 The Author(s). Published by IOP Publishing Ltd We analyze a scheme for preparation of magneti...
International audienceWe analyze a scheme for preparation of magnetically ordered states of two-comp...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
Quantum many-body phases offer unique properties and emergent phenomena, making them an active area ...
Quantum many-body phases offer unique properties and emergent phenomena, making them an active area ...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
The microscopic control available over cold atoms in optical lattices has opened new opportunities t...
International audienceThe microscopic control available over cold atoms in optical lattices has open...