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Quench of non-Markovian coherence in the deep sub-Ohmic spin-boson model: A unitary equilibration scheme

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arxiv 1409.3056 v1 pith:G5CWOPMV submitted 2014-09-10 cond-mat.stat-mech quant-ph

Quench of non-Markovian coherence in the deep sub-Ohmic spin-boson model: A unitary equilibration scheme

classification cond-mat.stat-mech quant-ph
keywords coherencemodelnon-markovianunitarybathbosonicdeepequilibration
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The deep sub-Ohmic spin-boson model shows a longstanding non-Markovian coherence at low temperature. Motivating to quench this robust coherence, the thermal effect is unitarily incorporated into the time evolution of the model, which is calculated by the adaptive time-dependent density matrix renormalization group algorithm combined with the orthogonal polynomials theory. Via introducing a unitary heating operator to the bosonic bath, the bath is heated up so that a majority portion of the bosonic excited states is occupied. It is found in this situation the coherence of the spin is quickly quenched even in the coherent regime, in which the non-Markovian feature dominates. With this finding we come up with a novel way to implement the unitary equilibration, the essential term of the eigenstate-thermalization hypothesis, through a short-time evolution of the model.

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