Physical Review Letters · 2017 · 71 citations · 35 references
Quantum ScienceSpintronicsMagnetic CorrelationsMetallic PhasesUniform Magnetic SusceptibilityPhysicsEngineeringNatural SciencesQuantum Lattice SystemMany-body Quantum PhysicCondensed Matter PhysicsQuantum MaterialsApplied PhysicsDisordered Quantum SystemUltracold AtomQuantum EntanglementHalf FillingQuantum Magnetism
We experimentally study the emergence of antiferromagnetic correlations between ultracold fermionic atoms in a two-dimensional optical lattice with decreasing temperature. We determine the uniform magnetic susceptibility of the two-dimensional Hubbard model from simultaneous measurements of the in situ density distribution of both spin components. At half filling and strong interactions our data approach the Heisenberg model of localized spins with antiferromagnetic correlations. Moreover, we observe a fast decay of magnetic correlations when doping the system away from half filling.
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Many-body physics with ultracold gases
Immanuel Bloch, Jean Dalibard, W. Zwerger · Reviews of Modern Physics · 2008 · 7.9K citations · Full text
The fluctuation-dissipation theorem
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Magnetism, Spintronics, Engineering +12