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Dynamical decoherence of a qubit coupled to a quantum dot or the SYK black hole

机译:Qubit耦合到量子点或Syk黑洞的动态聚变

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We study the dynamical decoherence of a qubit weakly coupled to a two-body random interaction model (TBRIM) describing a quantum dot of interacting fermions or the Sachdev-Ye-Kitaev (SYK) black hole model. We determine the rates of qubit relaxation and dephasing for regimes of dynamical thermalization of the quantum dot or of quantum chaos in the SYK model. These rates are found to correspond to the Fermi golden rule and quantum Zeno regimes depending on the qubit-fermion coupling strength. An unusual regime is found where these rates are practically independent of TBRIM parameters. We push forward an analogy between TBRIM and quantum small-world networks with an explosive spreading over exponentially large number of states in a finite time being similar to six degrees of separation in small-world social networks. We find that the SYK model has approximately two-three degrees of separation.
机译:我们研究了弱耦合到双体随机交互模型(TBRIM)的量子耦合的动力消退,所述两体随机交互模型(TBRIM)描述了相互作用的费粒或Sachdev-Ye-Kitaev(Syk)黑洞模型的量子点。 我们确定量子点Qubit放松的速率,并脱离Syk模型中量子点或量子混沌的动态热化制度。 发现这些速率对应于费米金规则和量子Zeno制度,这取决于Qubit-Fermion耦合强度。 发现不寻常的制度,这些税率几乎与TBRIM参数无关。 我们在TBRIM和量子小世界网络之间推动了一个类比,在有限的时间内与小世界社交网络中的六程度分离相比,在爆炸性地扩散了一个比例。 我们发现Syk模型具有大约两点分离。

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