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Non-equilibrium effects on charge and energy partitioning after an interaction quench

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arxiv 1610.04492 v2 pith:B75K366N submitted 2016-10-14 cond-mat.str-el cond-mat.mes-hall

Non-equilibrium effects on charge and energy partitioning after an interaction quench

classification cond-mat.str-el cond-mat.mes-hall
keywords chargeenergyquenchratiofractionalizationinteractionmodifiednon-equilibrium
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Charge and energy fractionalization are among the most intriguing features of interacting onedimensional fermion systems. In this work we determine how these phenomena are modified in the presence of an interaction quench. Charge and energy are injected into the system suddenly after the quench, by means of tunneling processes with a non-interacting one-dimensional probe. Here, we demonstrate that the system settles to a steady state in which the charge fractionalization ratio is unaffected by the pre-quenched parameters. On the contrary, due to the post-quench nonequilibrium spectral function, the energy partitioning ratio is strongly modified, reaching values larger than one. This is a peculiar feature of the non-equilibrium dynamics of the quench process and it is in sharp contrast with the non-quenched case, where the ratio is bounded by one.

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