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Emergent prethermalization signatures in out-of-time ordered correlations

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arxiv 1812.04776 v1 pith:GJ4IC6AF submitted 2018-12-12 quant-ph cond-mat.stat-mech

classification quant-phcond-mat.stat-mech
keywords correlationsorderedout-of-timeprethermalizationemergenthamiltonianmagneticquantum
verification ladder T0 review T1 audit T2 compute T3 formal
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How a many-body quantum system thermalizes --or fails to do so-- under its own interaction is a fundamental yet elusive concept. Here we demonstrate nuclear magnetic resonance observation of the emergence of prethermalization by measuring out-of-time ordered correlations. We exploit Hamiltonian engineering techniques to tune the strength of spin-spin interactions and of a transverse magnetic field in a spin chain system, as well as to invert the Hamiltonian sign to reveal out-of-time ordered correlations. At large fields, we observe an emergent conserved quantity due to prethermalization, which can be revealed by an early saturation of correlations. Our experiment not only demonstrates a new protocol to measure out-of-time ordered correlations, but also provides new insights in the study of quantum thermodynamics.

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