Quantum many-body phases offer unique properties and emergent phenomena, making them an active area of research. A promising approach for their experimental realization in model systems is to adiabatically follow the ground state of a quantum Hamiltonian from a product state of isolated particles to one that is strongly-correlated. Such protocols are relevant also more broadly in coherent quantum annealing and adiabatic quantum computing. Here we explore one such protocol in a system of ultracold atoms in an optical lattice. A fully magnetized state is connected to a correlated zero-magnetization state (an xy-ferromagnet) by a many-body spin rotation, realized by sweeping the detuning and power of a microwave field. The efficiency is charac...
We use microwave-induced adiabatic passages for selective spin flips within a string of optically tr...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
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...
We suggest and analyze a scheme to adiabatically cool bosonic atoms to picokelvin temperatures which...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
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 use microwave-induced adiabatic passages for selective spin flips within a string of optically tr...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...
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...
We suggest and analyze a scheme to adiabatically cool bosonic atoms to picokelvin temperatures which...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
Ultracold atoms in optical lattices provide a versatile tool with which to investigate fundamental p...
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 use microwave-induced adiabatic passages for selective spin flips within a string of optically tr...
Quantum mechanical superexchange interactions form the basis of quantum magnetism in strongly correl...
We analyze a scheme for preparation of magnetically ordered states of two-component bosonic atoms in...